Abstract:
The present invention provides an information processing system and method for a car, a in-vehicle device and a storage medium. The system includes a mobile terminal and a in-vehicle device, where the in-vehicle device includes: a communication module, where the communication module is used for communicating with the mobile terminal; and an information station, where the information station is used for receiving a query instruction sent by the mobile terminal through the communication module, acquiring vehicle condition information of the car according to the query instruction, and sending the acquired vehicle condition information to the mobile terminal through the communication module, and/or pushing the acquired vehicle condition information to the mobile terminal through the communication module at preset time intervals. By using the system according to an embodiment of the present invention, a user can send a query instruction in real time through a communication module, acquire vehicle condition information of the car in real time, or receive vehicle condition information pushed by an information station in real time. Thus, it is easy for the user to know the state of the vehicle in real time, so that the user can control the vehicle information more conveniently, and user experience is improved.
Abstract:
A display device, a vehicle, and a method for controlling a vehicle are provided. The display device includes: a beam generator, comprising a display and configured to generate a beam having image information displayed on the display, where a size of the display is a first preset size; and a holographic optical waveguide, configured to display an image of a second preset size at a first preset distance at a position behind the display device based on the beam having the image information, where the second preset size is a preset multiple of the first preset size; and the preset multiple is greater than 1. Through the display device, eye pupils do not need to be kept in a wide-open state that causes discomfort, which avoids fatigue and myopia; experience like watching a TV series at home can be realized; and an image size can be increased without occupying more physical space of an entire vehicle.
Abstract:
Disclosed are an integrated thermal management system, a vehicle, and a thermal management control method, which relate to the field of vehicle technology. The integrated thermal management system includes a heat pump subsystem, a battery detection module, an interaction module, a high-voltage system cooling subsystem, and a vehicle thermal management controller. The heat pump subsystem includes a heat pump subsystem detection module. The heat pump subsystem detection module is configured to detect state information of the heat pump subsystem. The high-voltage system cooling subsystem is configured to perform heat exchange with the heat pump subsystem and a high-voltage system of a vehicle. The battery detection module is configured to detect state information of a vehicle battery. The interaction module is configured to receive setting information of a thermal requirement of a passenger compartment. The vehicle thermal management controller is configured to determine a thermal management requirement of the vehicle battery according to the state information of the vehicle battery, determine a thermal management requirement of the passenger compartment according to the setting information, and determine a heat supplementation requirement according to the thermal management requirement of the vehicle battery, the thermal management requirement of the passenger compartment, and the state information of the heat pump subsystem.
Abstract:
The present disclosure relates to a vehicle thermal management system and an electric vehicle. The vehicle thermal management system includes a first thermal management system and a second thermal management system for a high-voltage system. The second thermal management system includes a heat sink, a heat exchanger, and a waste heat utilization branch. A water pump and a high-voltage system cooling branch passing through the high-voltage system that are in interconnected are arranged on the waste heat utilization branch. A cooling liquid outlet of the heat exchanger communicates with an inlet of the waste heat utilization branch. An outlet of the waste heat utilization branch optionally communicates with a cooling liquid inlet of the heat exchanger or with the cooling liquid inlet of the heat exchanger through the heat sink. The first thermal management system includes a compressor and a battery pack provided with a direct-cooling device. An outlet of the compressor communicates with a first port of the direct-cooling device of the battery pack. A second port of the direct-cooling device of the battery pack communicates with a refrigerant inlet of the heat exchanger through a first throttle branch, and a refrigerant outlet of the heat exchanger communicates with an inlet of the compressor. In this way, the arrangement of pipeline arrangement for cooling and heating the battery pack is simplified.
Abstract:
The present disclosure discloses a vehicle, and a method and apparatus for controlling a multi-screen system. The multi-screen system includes a plurality of display screens and a driving mechanism configured to drive the plurality of display screens to move in space. The method includes the following steps: acquiring a control instruction for the multi-screen system; and controlling the plurality of display screens to move according to the control instruction. This method allows a user to control the display screens to switch between different combination modes, so that the user's requirements on the positions, angles, display contents, etc. of the display screens can be met. This method is highly intelligent and provides the user with an optimal experience in the vehicle.
Abstract:
A remote control system for driving a vehicle, a vehicle intelligent key device (102) and a remote control method for driving a vehicle are provided. The remote control system comprises: a vehicle intelligent key device (102), configured to send a starting signal and a control signal; a vehicle, configured to receive the starting signal or the control signal, to start a remote control mode according to the starting signal, and to control a driving state of the vehicle according to the control signal and to control the vehicle to quit the remote control mode when a predetermined condition is satisfied.
Abstract:
A remote control system for driving a vehicle, a vehicle intelligent key device and a remote control method are provided. The remote control system comprises: a vehicle intelligent key device (102) configured to send a starting signal and control signal; and a vehicle (101) configured to receive the starting signal and the control signal, to start a remote control mode according to the starting signal, and to control a driving state of the vehicle (101) according to the control signal.