Abstract:
A vehicle including: a first bay configured to accommodate a ground-based moving body; a second bay configured to accommodate a flying moving body; a cargo hold connected to both the first bay and the second bay, and configured to store a package to be moved to either the ground-based moving body or the flying moving body; a first memory; and a first processor connected to the first memory, the first processor being configured to select whether to move the package in the cargo hold to the ground-based moving body or the flying moving body.
Abstract:
A battery mounting structure to enhance rigidity of a vehicle body without increasing a vehicle weight is provided. The battery mounting structure comprises a pair of frame members extending longitudinally and a battery pack an all-solid battery having a cell stack. The battery pack is disposed between the frame members. The battery pack is connected to the frame member through a connection member.
Abstract:
A battery mounting structure is provided to prevent water intrusion into a clearance between a battery pack and a floor panel of a vehicle. The battery mounting structure comprises: frame members extending longitudinally on both sides of the vehicle; a floor panel disposed between the frame members; and a battery pack situated underneath the floor panel. A sealing member is interposed between a periphery of the battery pack and a portion extending from a member opposed to the battery pack, and a drain hole is formed in the sealing member to connect an inner side and an outer side of the sealing member.
Abstract:
A battery mounting structure in which a battery pack is used as a reinforcement member is provided. An inner sidewall and an outer sidewall of a frame member are connected through a first transmission member. An outer side end of the first transmission member is situated at a level out of the height range of the battery. An inner side end of the first transmission member is attached to the inner sidewall at a level within the height range of the battery, or at a level predetermined distance away from the height range of the battery. A distance between the inner side end and the battery is shorter than that between the outer side end and the battery.
Abstract:
A battery mounting structure to enhance rigidity of a vehicle body without increasing a vehicle weight is provided. The battery mounting structure comprises a pair of frame members extending longitudinally and a battery pack an all-solid battery having a cell stack. The battery pack is disposed between the frame members. The battery pack is connected to the frame member through a connection member.
Abstract:
An autonomous driving device including: vehicle side surroundings information detecting sensors; a left-right pair of extensions provided to a towing device, the extensions extending further to a vehicle width direction outside than a vehicle width direction outside end portion of the towed vehicle; a left-right pair of device side surroundings information detecting sensors, the device side surroundings information detecting sensors being respectively provided to the left-right pair of extensions and detecting surroundings information; and a control device controlling travelling of the autonomous vehicle based on detection results of the vehicle side surroundings information detecting sensors, and, in cases in which the device side surroundings information detecting sensors are electrically connected to the control device, controlling travelling of the autonomous vehicle based on the surroundings information detected by the device side surroundings information detecting sensors in addition to surroundings information detected by the vehicle side surroundings information detecting sensors.
Abstract:
A sensor arrangement structure includes a vehicle framework member having a hollow cross-section, a vicinity information detection sensor and a cover. The vicinity information detection sensor is attached to the vehicle framework member. At least a portion of the vicinity information detection sensor is disposed inside the hollow cross-section of the vehicle framework member. A detection portion that detects vicinity information of a vehicle is oriented toward a vehicle outer side of the vehicle framework member. The cover is disposed to oppose the detection portion and allows transmission of a detection carrier that is detected by the detection portion.
Abstract:
A structure disposed with a peripheral information detection sensor includes: a peripheral information detection sensor that is disposed at a window frame portion of a side surface of a vehicle and that is equipped with a detection component that detects peripheral information relating to the area around the vehicle; a window member that is attached to the window frame portion and covers the peripheral information detection sensor from an exterior of the vehicle, with at least the section of the window member that opposes the peripheral information detection sensor being opaque or translucent; and an interior member that covers the peripheral information detection sensor from the vehicle interior side.
Abstract:
A control device for a vehicle including: a peripheral information detection section that detects peripheral information of a vehicle; a sensing section that senses dirt at the peripheral information detection section; a removal section that removes dirt at the peripheral information detection section; and a control section that controls the removal section to remove the dirt, in at least one of a case in which removal of the dirt by the removal section is instructed or a case in which the dirt is sensed by the sensing section.