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Id Matter Term Definition Doc No Modified Actions
2471 GAV-PAT-1-PROV Cargo Space
As used herein, the term "Cargo Space" refers to a volume, region, capacity, or combination thereof configured or available to receive, accommodate, store, support, transport, or permit passage of cargo, as distinguished from a cargo area that may define or bound such volume. Cargo space may be defined physically, geometrically, or functionally and need not be empty, continuous, enclosed, regularly shaped, or bounded by physical walls or surfaces. Cargo space may include actual, potential, occupied, unoccupied, accessible, selectively accessible, or reconfigurable space and may be increased, reduced, divided, combined, or otherwise altered by repositioning one or more components or structures. In certain embodiments, cargo space may be located within, above, below, adjacent to, or otherwise relative to a cargo area, cargo floor, cargo cover, cargo platform, or vehicle and may include enclosed or unenclosed volume beneath a cargo cover, between cargo platforms, or above an upper region of a cargo area. As used herein, the term "Cargo Space" refers to a volume, region, capacity, or combination thereof configured or available to receive, accommodate, store, support, transport, or permit passage of cargo, as distinguished from a cargo area that may define or bound such volume. Cargo space may be defined physically, geometrically, or functionally and need not be empty, continuous, enclosed, regularly shaped, or bounded by physical walls or surfaces. Cargo space may include actual, potential, occupied, unoccupied, accessible, selectively accessible, or reconfigurable space and may be increased, reduced, divided, combined, or otherwise altered by repositioning one or more components or structures. In certain embodiments, cargo space may be located within, above, below, adjacent to, or otherwise relative to a cargo area, cargo floor, cargo cover, cargo platform, or vehicle and may include enclosed or unenclosed volume beneath a cargo cover, between cargo platforms, or above an upper region of a cargo area.
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2472 GAV-PAT-1-PROV Closed Position
As used herein, the term “Closed Position” refers to a position, state, orientation, or configuration of one or more components, members, devices, structures, assemblies, interfaces, or combinations thereof in which an opening, region, space, passage, volume, or other area may be at least partially covered, enclosed, shielded, blocked, restricted, secured, or otherwise made less accessible relative to another position or configuration. A closed position does not require complete closure, enclosure, obstruction, sealing, or isolation and may include partially closed, intermediate, overlapping, engaged, deployed, or other configurations that perform or contribute to a closing or covering function. A component may occupy a closed position independently of, concurrently with, or differently from one or more other components. In certain embodiments, a closed position may include a position in which a cargo cover, cover section, or cover panel extends over, across, above, or otherwise covers at least a portion of a cargo area. A cargo cover in a closed position may completely or partially cover, shield, protect, secure, or enclose the cargo area, and one or more other cover sections or cover panels may remain open, partially open, repositioned, or otherwise differently configured. As used herein, the term “Closed Position” refers to a position, state, orientation, or configuration of one or more components, members, devices, structures, assemblies, interfaces, or combinations thereof in which an opening, region, space, passage, volume, or other area may be at least partially covered, enclosed, shielded, blocked, restricted, secured, or otherwise made less accessible relative to another position or configuration. A closed position does not require complete closure, enclosure, obstruction, sealing, or isolation and may include partially closed, intermediate, overlapping, engaged, deployed, or other configurations that perform or contribute to a closing or covering function. A component may occupy a closed position independently of, concurrently with, or differently from one or more other components. In certain embodiments, a closed position may include a position in which a cargo cover, cover section, or cover panel extends over, across, above, or otherwise covers at least a portion of a cargo area. A cargo cover in a closed position may completely or partially cover, shield, protect, secure, or enclose the cargo area, and one or more other cover sections or cover panels may remain open, partially open, repositioned, or otherwise differently configured.
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2473 GAV-PAT-1-PROV Coupled
As used herein, the term “Coupled” refers to a relationship in which two or more components, structures, or assemblies may be connected, joined, associated, supported, engaged, or otherwise linked so that a force, movement, position, function, or structural relationship may be transferred or maintained between them. Coupling may be direct or indirect and may include one or more intervening components. In certain embodiments, coupled components may be fixed relative to one another, movable relative to one another, selectively connected, releasably connected, permanently connected, or otherwise associated. As used herein, the term “Coupled” refers to a relationship in which two or more components, structures, or assemblies may be connected, joined, associated, supported, engaged, or otherwise linked so that a force, movement, position, function, or structural relationship may be transferred or maintained between them. Coupling may be direct or indirect and may include one or more intervening components. In certain embodiments, coupled components may be fixed relative to one another, movable relative to one another, selectively connected, releasably connected, permanently connected, or otherwise associated.
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2475 GAV-PAT-1-PROV Cover Panel
As used herein, the term “Cover Panel” refers to a panel that forms or is configured to form at least part of a cover. A cover panel may be physically, geometrically, or functionally distinguishable from another portion of the cover and need not be removable, separable, or divided from another cover panel by a visible boundary. A cover panel may be rigid, semi-rigid, flexible, foldable, rollable, articulated, segmented, retractable, or otherwise configured and may be fixed or movable relative to another cover panel, a cover section, a vehicle, cargo area, support structure, or other reference. In certain embodiments, a cover section may include one or more cover panels, and a cover panel may be joined, hinged, interconnected, adjacent to, overlapping with, spaced from, or otherwise coupled or positioned relative to one or more other cover panels. As used herein, the term “Cover Panel” refers to a panel that forms or is configured to form at least part of a cover. A cover panel may be physically, geometrically, or functionally distinguishable from another portion of the cover and need not be removable, separable, or divided from another cover panel by a visible boundary. A cover panel may be rigid, semi-rigid, flexible, foldable, rollable, articulated, segmented, retractable, or otherwise configured and may be fixed or movable relative to another cover panel, a cover section, a vehicle, cargo area, support structure, or other reference. In certain embodiments, a cover section may include one or more cover panels, and a cover panel may be joined, hinged, interconnected, adjacent to, overlapping with, spaced from, or otherwise coupled or positioned relative to one or more other cover panels.
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2476 GAV-PAT-1-PROV Cover Section
As used herein, the term “Cover Section” refers to a region, portion, component, member, assembly, or group of components that forms or is configured to form at least part of a cover or covering structure. A cover section may be physically, geometrically, or functionally distinguishable from another portion of the cover and need not be removable, separable, or divided from another cover section by a visible boundary. A cover section may include a unitary member or one or more interconnected, adjacent, overlapping, or spatially separated members and may be rigid, semi-rigid, flexible, foldable, rollable, articulated, segmented, retractable, or otherwise configured. In certain embodiments, a cover section may form part of a cargo cover and may include one or more cover panels. A first cover section, a second cover section, or both may be fixed or movable relative to one another or relative to a vehicle, cargo area, support structure, or other reference and may be positioned or moved between an open position, a closed position, or one or more intermediate or other positions. As used herein, the term “Cover Section” refers to a region, portion, component, member, assembly, or group of components that forms or is configured to form at least part of a cover or covering structure. A cover section may be physically, geometrically, or functionally distinguishable from another portion of the cover and need not be removable, separable, or divided from another cover section by a visible boundary. A cover section may include a unitary member or one or more interconnected, adjacent, overlapping, or spatially separated members and may be rigid, semi-rigid, flexible, foldable, rollable, articulated, segmented, retractable, or otherwise configured. In certain embodiments, a cover section may form part of a cargo cover and may include one or more cover panels. A first cover section, a second cover section, or both may be fixed or movable relative to one another or relative to a vehicle, cargo area, support structure, or other reference and may be positioned or moved between an open position, a closed position, or one or more intermediate or other positions.
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2477 GAV-PAT-1-PROV Cover Support Structure
As used herein, the term “Cover Support Structure” refers to one or more components, members, interfaces, supports, assemblies, structures, and/or combinations thereof configured to directly or indirectly support, position, retain, guide, couple, constrain, carry, or facilitate movement of a cover or one or more portions thereof. A cover support structure may include a single component or a plurality of interconnected, cooperating, adjacent, and/or spatially separated components and need not continuously engage the cover, bear the entire weight or load of the cover, or be physically separate from the cover or another supporting structure. A cover support structure may be formed as a separate structure, incorporated into another component or assembly, or defined physically, geometrically, or functionally as a portion of a unitary or integrated structure without a visible or separable boundary. All or part of a cover support structure may also form or function as all or part of a cargo platform support structure, side support structure, elevation structure, translation assembly, mounting structure, vehicle structure, and/or another structure. A cover support structure may include rails, tracks, frames, brackets, arms, links, hinges, pivot connections, guides, rollers, retainers, mounting members, and/or other supporting structures. In certain embodiments, a cover support structure may support one or more cargo cover sections or cover panels relative to a vehicle or cargo area, may support or guide movement thereof between closed, open, raised, side-stowed, and/or other positions, and may support the cover sections or cover panels in a folded and/or other configuration. As used herein, the term “Cover Support Structure” refers to one or more components, members, interfaces, supports, assemblies, structures, and/or combinations thereof configured to directly or indirectly support, position, retain, guide, couple, constrain, carry, or facilitate movement of a cover or one or more portions thereof. A cover support structure may include a single component or a plurality of interconnected, cooperating, adjacent, and/or spatially separated components and need not continuously engage the cover, bear the entire weight or load of the cover, or be physically separate from the cover or another supporting structure. A cover support structure may be formed as a separate structure, incorporated into another component or assembly, or defined physically, geometrically, or functionally as a portion of a unitary or integrated structure without a visible or separable boundary. All or part of a cover support structure may also form or function as all or part of a cargo platform support structure, side support structure, elevation structure, translation assembly, mounting structure, vehicle structure, and/or another structure. A cover support structure may include rails, tracks, frames, brackets, arms, links, hinges, pivot connections, guides, rollers, retainers, mounting members, and/or other supporting structures. In certain embodiments, a cover support structure may support one or more cargo cover sections or cover panels relative to a vehicle or cargo area, may support or guide movement thereof between closed, open, raised, side-stowed, and/or other positions, and may support the cover sections or cover panels in a folded and/or other configuration.
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2478 GAV-PAT-1-PROV Elevation Structure
As used herein, the term “Elevation Structure” refers to one or more components, members, interfaces, supports, assemblies, structures, and/or combinations thereof configured to position, support, space, raise, lower, maintain, or otherwise locate another component or structure at one or more selected elevations relative to a surface, region, component, structure, position, orientation, and/or other reference. An elevation structure may be fixed, movable, adjustable, extendable, retractable, collapsible, telescoping, pivotable, articulated, and/or otherwise configured and may include a single component or a plurality of interconnected, cooperating, adjacent, and/or spatially separated components. An elevation structure need not actively raise or lower the supported component, extend in a vertical direction, maintain a constant elevation, or be physically separate from the supported component or reference structure. An elevation structure may include one or more walls, panels, risers, posts, legs, frames, brackets, spacers, arms, linkages, supports, actuators, and/or other structures. In certain embodiments, an elevation structure may extend between a vehicle and a support structure and may position a cargo cover vertically above a cargo area to define cargo space above the cargo area. As used herein, the term “Elevation Structure” refers to one or more components, members, interfaces, supports, assemblies, structures, and/or combinations thereof configured to position, support, space, raise, lower, maintain, or otherwise locate another component or structure at one or more selected elevations relative to a surface, region, component, structure, position, orientation, and/or other reference. An elevation structure may be fixed, movable, adjustable, extendable, retractable, collapsible, telescoping, pivotable, articulated, and/or otherwise configured and may include a single component or a plurality of interconnected, cooperating, adjacent, and/or spatially separated components. An elevation structure need not actively raise or lower the supported component, extend in a vertical direction, maintain a constant elevation, or be physically separate from the supported component or reference structure. An elevation structure may include one or more walls, panels, risers, posts, legs, frames, brackets, spacers, arms, linkages, supports, actuators, and/or other structures. In certain embodiments, an elevation structure may extend between a vehicle and a support structure and may position a cargo cover vertically above a cargo area to define cargo space above the cargo area.
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2479 GAV-PAT-1-PROV Extended Position
As used herein, the term “Extended Position” refers to a position or configuration, as distinguished from a corresponding retracted position or another reference position or configuration, in which at least a portion of a component, structure, assembly, and/or combination thereof is projected, advanced, lengthened, unfolded, separated, moved away from, or otherwise positioned farther from or beyond a reference region, supporting structure, component, position, and/or other reference. An extended position need not maximize an external dimension, place the component entirely outside another structure, represent a fully extended position, or correspond to an endpoint of movement. An extended position may represent a partial, intermediate, selected, temporary, and/or full degree of extension and may be reached through translational, rotational, pivoting, unfolding, telescoping, compound, and/or other movement. In certain embodiments, a cargo platform in an extended position may project longitudinally outward from or relative to a cargo area to facilitate loading, unloading, access, handling of cargo, and/or another activity and may be movable between the extended position and a retracted position by a translation assembly. As used herein, the term “Extended Position” refers to a position or configuration, as distinguished from a corresponding retracted position or another reference position or configuration, in which at least a portion of a component, structure, assembly, and/or combination thereof is projected, advanced, lengthened, unfolded, separated, moved away from, or otherwise positioned farther from or beyond a reference region, supporting structure, component, position, and/or other reference. An extended position need not maximize an external dimension, place the component entirely outside another structure, represent a fully extended position, or correspond to an endpoint of movement. An extended position may represent a partial, intermediate, selected, temporary, and/or full degree of extension and may be reached through translational, rotational, pivoting, unfolding, telescoping, compound, and/or other movement. In certain embodiments, a cargo platform in an extended position may project longitudinally outward from or relative to a cargo area to facilitate loading, unloading, access, handling of cargo, and/or another activity and may be movable between the extended position and a retracted position by a translation assembly.
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2480 GAV-PAT-1-PROV Folded Configuration
As used herein, the term “Folded Configuration” refers to a configuration in which one or more portions, sections, panels, members, components, structures, assemblies, or combinations thereof are repositioned relative to another portion, structure, or reference by folding, bending, pivoting, articulating, overlapping, stacking, collapsing, nesting, or other relative movement or deformation. A folded configuration may include one or more complete, partial, intermediate, sequential, or compound folds and need not include a sharp crease, complete overlap, contact, or parallel alignment between the repositioned portions. A folded configuration may include alternating, zigzag, accordion, concertina, stacked, nested, overlapping, layered, or other arrangements and may reduce or otherwise alter an area, width, length, height, volume, profile, or spatial extent of a structure. In certain embodiments, two or more cover sections and/or cover panels may assume a folded configuration as they move toward a side of a vehicle or from a closed position toward an open or side-stowed position. As used herein, the term “Folded Configuration” refers to a configuration in which one or more portions, sections, panels, members, components, structures, assemblies, or combinations thereof are repositioned relative to another portion, structure, or reference by folding, bending, pivoting, articulating, overlapping, stacking, collapsing, nesting, or other relative movement or deformation. A folded configuration may include one or more complete, partial, intermediate, sequential, or compound folds and need not include a sharp crease, complete overlap, contact, or parallel alignment between the repositioned portions. A folded configuration may include alternating, zigzag, accordion, concertina, stacked, nested, overlapping, layered, or other arrangements and may reduce or otherwise alter an area, width, length, height, volume, profile, or spatial extent of a structure. In certain embodiments, two or more cover sections and/or cover panels may assume a folded configuration as they move toward a side of a vehicle or from a closed position toward an open or side-stowed position.
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2481 GAV-PAT-1-PROV Lateral Direction
As used herein, the term “Lateral Direction” refers to a direction extending generally transverse to or across a longitudinal direction of an object, structure, space, area, assembly, or combination thereof. A lateral direction may be defined physically, geometrically, functionally, or relative to another direction, feature, object, orientation, axis, or frame of reference and need not be perpendicular to the longitudinal direction, correspond to a shortest dimension, or follow a straight line. A lateral direction may follow a straight, curved, angled, segmented, irregular, compound, and/or other path and may be used to describe movement, spacing, alignment, positioning, extension, or orientation of one or more components or structures. In certain embodiments, a lateral direction of a truck bed may extend generally between opposing sidewalls of the truck bed. In other embodiments, a lateral direction of a storage rack or shelving assembly may extend generally between opposing side supports of the assembly. As used herein, the term “Lateral Direction” refers to a direction extending generally transverse to or across a longitudinal direction of an object, structure, space, area, assembly, or combination thereof. A lateral direction may be defined physically, geometrically, functionally, or relative to another direction, feature, object, orientation, axis, or frame of reference and need not be perpendicular to the longitudinal direction, correspond to a shortest dimension, or follow a straight line. A lateral direction may follow a straight, curved, angled, segmented, irregular, compound, and/or other path and may be used to describe movement, spacing, alignment, positioning, extension, or orientation of one or more components or structures. In certain embodiments, a lateral direction of a truck bed may extend generally between opposing sidewalls of the truck bed. In other embodiments, a lateral direction of a storage rack or shelving assembly may extend generally between opposing side supports of the assembly.
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2482 GAV-PAT-1-PROV Longitudinal Direction
As used herein, the term “Longitudinal Direction” refers to a direction extending generally along a length or lengthwise extent of an object, structure, space, area, assembly, or combination thereof. A longitudinal direction may be distinguished from a lateral direction extending generally transverse to the longitudinal direction. A longitudinal direction may be defined physically, geometrically, functionally, or relative to another direction, feature, object, orientation, axis, or frame of reference and need not correspond to the longest dimension or a straight line. A longitudinal direction may follow a straight, curved, angled, segmented, irregular, compound, or other path and may be used to describe movement, spacing, alignment, positioning, extension, or orientation of one or more components or structures. In certain embodiments, a longitudinal direction of a truck bed may extend generally between a front wall and a tailgate of the truck bed. In other embodiments, a longitudinal direction of a storage rack or shelving assembly may extend generally between opposing end supports of the assembly. As used herein, the term “Longitudinal Direction” refers to a direction extending generally along a length or lengthwise extent of an object, structure, space, area, assembly, or combination thereof. A longitudinal direction may be distinguished from a lateral direction extending generally transverse to the longitudinal direction. A longitudinal direction may be defined physically, geometrically, functionally, or relative to another direction, feature, object, orientation, axis, or frame of reference and need not correspond to the longest dimension or a straight line. A longitudinal direction may follow a straight, curved, angled, segmented, irregular, compound, or other path and may be used to describe movement, spacing, alignment, positioning, extension, or orientation of one or more components or structures. In certain embodiments, a longitudinal direction of a truck bed may extend generally between a front wall and a tailgate of the truck bed. In other embodiments, a longitudinal direction of a storage rack or shelving assembly may extend generally between opposing end supports of the assembly.
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2483 GAV-PAT-1-PROV Open Position
As used herein, the term “Open Position” refers to a position or configuration of one or more components, members, assemblies, structures, or combinations thereof in which access to, through, around, or relative to another component, structure, space, opening, or region may be increased, enabled, or otherwise altered relative to a closed position or another reference position or configuration. An open position may include a fully open, partially open, intermediate, temporary, selected, or variable position and may be achieved by moving, folding, translating, pivoting, raising, lowering, retracting, rolling, tilting, rotating, sliding, separating, displacing, stowing, or otherwise repositioning one or more components. In certain embodiments, an open position of a cargo cover may provide complete or partial access to at least a portion of a cargo area. A cargo cover, cover panels, and/or one or more cover sections may be moved toward a side, front, rear, or other region of a vehicle or cargo area and may be positioned in a tilted-up, side-stowed, or other repositioned configuration. An open position may include a partial-access configuration in which another cover section or cover panel remains in a closed position or is disposed in another position or configuration. As used herein, the term “Open Position” refers to a position or configuration of one or more components, members, assemblies, structures, or combinations thereof in which access to, through, around, or relative to another component, structure, space, opening, or region may be increased, enabled, or otherwise altered relative to a closed position or another reference position or configuration. An open position may include a fully open, partially open, intermediate, temporary, selected, or variable position and may be achieved by moving, folding, translating, pivoting, raising, lowering, retracting, rolling, tilting, rotating, sliding, separating, displacing, stowing, or otherwise repositioning one or more components. In certain embodiments, an open position of a cargo cover may provide complete or partial access to at least a portion of a cargo area. A cargo cover, cover panels, and/or one or more cover sections may be moved toward a side, front, rear, or other region of a vehicle or cargo area and may be positioned in a tilted-up, side-stowed, or other repositioned configuration. An open position may include a partial-access configuration in which another cover section or cover panel remains in a closed position or is disposed in another position or configuration.
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2484 GAV-PAT-1-PROV Pivot Connection
As used herein, the term “Pivot Connection” refers to one or more components, members, interfaces, joints, material regions, couplings, assemblies, structures, and/or combinations thereof configured to permit, guide, constrain, support, control, or otherwise facilitate rotational or angular movement of one component or structure relative to another component, structure, position, and/or reference. A pivot connection may be direct or indirect, discrete or integral, fixed or movable, rigid or flexible, permanent or releasable, and may include one or more intervening components. A pivot connection need not include a physical pin, conventional hinge, fixed pivot axis, circular bearing surface, or purely rotational movement and may define an actual, virtual, instantaneous, movable, variable, and/or compound pivot axis or region. A pivot connection may include a hinge, pin joint, journal, axle, bearing, flexible joint, living hinge, linkage, articulated connection, rotational interface, and/or other pivoting structure. In certain embodiments, a pivot connection may permit a cargo platform, cover section, cover panel, support arm, retainer, and/or another component to move through a selected angular range alone or in combination with translational, folding, vertical, lateral, longitudinal, and/or other movement. As used herein, the term “Pivot Connection” refers to one or more components, members, interfaces, joints, material regions, couplings, assemblies, structures, and/or combinations thereof configured to permit, guide, constrain, support, control, or otherwise facilitate rotational or angular movement of one component or structure relative to another component, structure, position, and/or reference. A pivot connection may be direct or indirect, discrete or integral, fixed or movable, rigid or flexible, permanent or releasable, and may include one or more intervening components. A pivot connection need not include a physical pin, conventional hinge, fixed pivot axis, circular bearing surface, or purely rotational movement and may define an actual, virtual, instantaneous, movable, variable, and/or compound pivot axis or region. A pivot connection may include a hinge, pin joint, journal, axle, bearing, flexible joint, living hinge, linkage, articulated connection, rotational interface, and/or other pivoting structure. In certain embodiments, a pivot connection may permit a cargo platform, cover section, cover panel, support arm, retainer, and/or another component to move through a selected angular range alone or in combination with translational, folding, vertical, lateral, longitudinal, and/or other movement.
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2486 GAV-PAT-1-PROV Raised Position
As used herein, the term “Raised Position” refers to a position or configuration in which at least a portion of a component, structure, assembly, or combination thereof is positioned higher, farther from a supporting surface, or otherwise displaced in a generally vertical direction relative to another position, configuration, component, structure, region, or reference. A raised position may be defined physically, geometrically, or functionally and need not be horizontal, upright, fully raised, directly above another position, or reached through purely vertical movement. A raised position may include vertical, inclined, tilted, pivoted, rotated, translated, folded, partially raised, fully raised, side-stowed, or compound configurations and may be reached manually, through powered or assisted operation, automatically, or through combinations thereof. In certain embodiments, a cargo platform may move from a cargo position to a raised position to increase access to an underlying region, cargo floor, cargo space, or another portion of a cargo area. As used herein, the term “Raised Position” refers to a position or configuration in which at least a portion of a component, structure, assembly, or combination thereof is positioned higher, farther from a supporting surface, or otherwise displaced in a generally vertical direction relative to another position, configuration, component, structure, region, or reference. A raised position may be defined physically, geometrically, or functionally and need not be horizontal, upright, fully raised, directly above another position, or reached through purely vertical movement. A raised position may include vertical, inclined, tilted, pivoted, rotated, translated, folded, partially raised, fully raised, side-stowed, or compound configurations and may be reached manually, through powered or assisted operation, automatically, or through combinations thereof. In certain embodiments, a cargo platform may move from a cargo position to a raised position to increase access to an underlying region, cargo floor, cargo space, or another portion of a cargo area.
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2488 GAV-PAT-1-PROV Retracted Position
As used herein, the term “Retracted Position” refers to a position or configuration, as distinguished from a corresponding extended position or another reference position or configuration, in which at least a portion of a component, structure, assembly, and/or combination thereof is received, withdrawn, shortened, collapsed, nested, overlapped, moved toward, or otherwise positioned nearer to or within a reference region, supporting structure, component, position, and/or other reference. A retracted position need not place the component entirely within another structure, minimize every external dimension, represent a fully retracted position, or correspond to an endpoint of movement. A retracted position may represent a partial, intermediate, selected, temporary, and/or full degree of retraction and may be reached through translational, rotational, pivoting, folding, telescoping, compound, and/or other movement. In certain embodiments, a cargo platform in a retracted position may be received within, positioned over, or otherwise located relative to a cargo area and may be movable from the retracted position toward an extended position by a translation assembly. As used herein, the term “Retracted Position” refers to a position or configuration, as distinguished from a corresponding extended position or another reference position or configuration, in which at least a portion of a component, structure, assembly, and/or combination thereof is received, withdrawn, shortened, collapsed, nested, overlapped, moved toward, or otherwise positioned nearer to or within a reference region, supporting structure, component, position, and/or other reference. A retracted position need not place the component entirely within another structure, minimize every external dimension, represent a fully retracted position, or correspond to an endpoint of movement. A retracted position may represent a partial, intermediate, selected, temporary, and/or full degree of retraction and may be reached through translational, rotational, pivoting, folding, telescoping, compound, and/or other movement. In certain embodiments, a cargo platform in a retracted position may be received within, positioned over, or otherwise located relative to a cargo area and may be movable from the retracted position toward an extended position by a translation assembly.
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2489 GAV-PAT-1-PROV Side
As used herein, the term “Side” refers to a region, portion, boundary, edge, surface, face, or direction associated with an object, structure, space, area, geometric figure, or combination thereof. A side may be defined physically, geometrically, functionally, or relative to another object, structure, location, orientation, axis, direction, or frame of reference. A side may be straight, curved, angled, segmented, irregular, open, or otherwise configured and need not correspond to a continuous physical surface or boundary. Two or more sides may be opposing, adjacent, intersecting, spaced apart, corresponding, different, symmetric, or asymmetric. In certain embodiments, a side of a vehicle or cargo area may refer to a lateral region, boundary, or portion associated with a sidewall, bed rail, body panel, frame member, wheel-well region, or a lateral portion of the vehicle or cargo area. Opposing sides of a vehicle or cargo area may refer to laterally spaced side regions. As used herein, the term “Side” refers to a region, portion, boundary, edge, surface, face, or direction associated with an object, structure, space, area, geometric figure, or combination thereof. A side may be defined physically, geometrically, functionally, or relative to another object, structure, location, orientation, axis, direction, or frame of reference. A side may be straight, curved, angled, segmented, irregular, open, or otherwise configured and need not correspond to a continuous physical surface or boundary. Two or more sides may be opposing, adjacent, intersecting, spaced apart, corresponding, different, symmetric, or asymmetric. In certain embodiments, a side of a vehicle or cargo area may refer to a lateral region, boundary, or portion associated with a sidewall, bed rail, body panel, frame member, wheel-well region, or a lateral portion of the vehicle or cargo area. Opposing sides of a vehicle or cargo area may refer to laterally spaced side regions.
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2490 GAV-PAT-1-PROV Side Support Structure
As used herein, the term “Side Support Structure” refers to one or more components, members, interfaces, supports, assemblies, structures, and/or combinations thereof associated with, positioned toward, extending along, or otherwise corresponding to a side or side region and configured to directly or indirectly support, position, retain, guide, couple, constrain, carry, or facilitate movement of one or more other components or structures. A side support structure may include a single component or a plurality of interconnected, cooperating, adjacent, and/or spatially separated components and need not be located entirely at the side, extend continuously along the side, or form an exterior boundary. A side support structure may be formed as a separate structure, incorporated into another component or assembly, or defined physically, geometrically, or functionally as a portion of a unitary or integrated structure without a visible or separable boundary. All or part of a side support structure may also form or function as all or part of a cover support structure, cargo platform support structure, elevation structure, translation assembly, mounting structure, vehicle structure, and/or another structure. First and second side support structures may be separate, interconnected, integrated into a common unit, corresponding, mirrored, asymmetric, and/or otherwise configured relative to one another. In certain embodiments, a side support structure may be associated with a side of a vehicle or cargo area and may support both a cover section and a cargo platform. As used herein, the term “Side Support Structure” refers to one or more components, members, interfaces, supports, assemblies, structures, and/or combinations thereof associated with, positioned toward, extending along, or otherwise corresponding to a side or side region and configured to directly or indirectly support, position, retain, guide, couple, constrain, carry, or facilitate movement of one or more other components or structures. A side support structure may include a single component or a plurality of interconnected, cooperating, adjacent, and/or spatially separated components and need not be located entirely at the side, extend continuously along the side, or form an exterior boundary. A side support structure may be formed as a separate structure, incorporated into another component or assembly, or defined physically, geometrically, or functionally as a portion of a unitary or integrated structure without a visible or separable boundary. All or part of a side support structure may also form or function as all or part of a cover support structure, cargo platform support structure, elevation structure, translation assembly, mounting structure, vehicle structure, and/or another structure. First and second side support structures may be separate, interconnected, integrated into a common unit, corresponding, mirrored, asymmetric, and/or otherwise configured relative to one another. In certain embodiments, a side support structure may be associated with a side of a vehicle or cargo area and may support both a cover section and a cargo platform.
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2430 BRT-PAT-2-PROV Sample-size justification
“Sample-size justification” refers to an explanation, calculation, rationale, or discussion regarding how the sample size of a study was determined or why it is appropriate for the intended analyses. Sample-size justification may include power calculations, effect-size assumptions, feasibility explanations, economic constraints, references to prior-published benchmarks, or the like. “Sample-size justification” refers to an explanation, calculation, rationale, or discussion regarding how the sample size of a study was determined or why it is appropriate for the intended analyses. Sample-size justification may include power calculations, effect-size assumptions, feasibility explanations, economic constraints, references to prior-published benchmarks, or the like.
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2405 BRT-PAT-2-PROV Classification accuracy
“Classification accuracy” refers to a measure of how correctly a computational system assigns items to their intended categories or outcome classes. Classification accuracy may be calculated in various ways, including, without limitation, the proportion of correctly classified samples, weighted or averaged accuracy across multiple classes, accuracy computed relative to a reference dataset containing known or expected labels, or the like. In some embodiments, classification accuracy is used as part of a training objective, performance evaluation process, quality-control mechanism for manuscript screening systems, or the like. “Classification accuracy” refers to a measure of how correctly a computational system assigns items to their intended categories or outcome classes. Classification accuracy may be calculated in various ways, including, without limitation, the proportion of correctly classified samples, weighted or averaged accuracy across multiple classes, accuracy computed relative to a reference dataset containing known or expected labels, or the like. In some embodiments, classification accuracy is used as part of a training objective, performance evaluation process, quality-control mechanism for manuscript screening systems, or the like.
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2406 BRT-PAT-2-PROV similarity
“Similarity” refers to a quantitative or qualitative measure indicating a degree of relatedness, correspondence, resemblance, alignment, or the like between two items, such as two texts, vectors, features, model outputs, or the like. Similarity may be assessed using numerical metrics (e.g., cosine similarity, correlation, distance-based measures, or the like) or rule-based or semantic comparison techniques. In certain embodiments, similarity is used to compare machine-generated content to human-generated content, to evaluate consistency of outputs across models, or to guide training or optimization processes. “Similarity” refers to a quantitative or qualitative measure indicating a degree of relatedness, correspondence, resemblance, alignment, or the like between two items, such as two texts, vectors, features, model outputs, or the like. Similarity may be assessed using numerical metrics (e.g., cosine similarity, correlation, distance-based measures, or the like) or rule-based or semantic comparison techniques. In certain embodiments, similarity is used to compare machine-generated content to human-generated content, to evaluate consistency of outputs across models, or to guide training or optimization processes.
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