Lighting method for shared vehicle and lighting device for shared vehicle

By establishing a Bluetooth connection between shared vehicles, the second riding vehicle is automatically turned on when the first riding vehicle is approached by using the instructions of the vehicle server, solving the problem of insufficient brightness at night riding and improving riding safety and user experience.

CN114928829BActive Publication Date: 2025-05-16NINGBO XIAOLIU SHARING INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202210492113.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-05-07
Publication Date
2025-05-16
Estimated Expiration
2042-05-07

AI Technical Summary

Technical Problem

When users ride at night, due to the short illumination distance of the vehicle headlights and the darker brightness, it leads to inconvenience in riding, reducing user experience and posing safety risks.

Method used

By establishing a Bluetooth connection between shared vehicles, the vehicle server sends a lock-opening command to the first riding vehicle, the first riding vehicle opens the vehicle lock and sends a first type of Bluetooth signal, and the second riding vehicle in the locked state turns on the lighting device after receiving the signal.

Benefits of technology

During the riding process after the first cycling vehicle is unlocked, the second car can automatically turn on the lighting, providing the first car with more sufficient brightness, improving riding safety, and improving user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention provides a lighting method for a shared vehicle and a lighting device for a shared vehicle, wherein the method comprises: a vehicle server first issues an unlocking instruction according to a user's unlocking request, a first riding vehicle unlocks the vehicle lock after obtaining the unlocking instruction, and sends a first type of Bluetooth signal, and a second riding vehicle in a locked state turns on the lighting device after obtaining the first type of Bluetooth signal. By establishing a Bluetooth connection between the first riding vehicle and the second riding vehicle, during the riding process after the first riding vehicle is unlocked, the second vehicle can provide lighting for the first vehicle, thereby improving the safety of vehicle driving and effectively improving the user experience.
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Description

Technical Field

[0001] The present invention relates to the technical field of shared vehicles, and in particular to a lighting method and a lighting device for a shared vehicle. Background Art

[0002] With the rapid development of the Internet, shared vehicles have become an important way for people to travel and are favored by more and more users.

[0003] However, when users are riding, especially at night, the headlights of their own vehicles have a short illumination distance and dim brightness, which is not conducive to users' riding, will reduce the user's experience, and in serious cases, will cause safety hazards. Summary of the invention

[0004] The object of the present invention is to provide a lighting method and a lighting device for a shared vehicle to solve the problem of riding safety in an environment with low brightness.

[0005] In a first aspect, a lighting method for a shared vehicle is provided, the method being applied to a first riding vehicle with a Bluetooth communication function, the first riding vehicle being communicatively connected to a vehicle server, the method comprising: obtaining an unlocking instruction sent by the vehicle server; wherein the unlocking instruction is an instruction generated by the vehicle server in response to a user's unlocking request for the first riding vehicle; opening a vehicle lock of the first riding vehicle according to the unlocking instruction, and turning on a first sending function of the first riding vehicle; wherein the first sending function is used to characterize that the first riding vehicle can send a first class of Bluetooth signals; sending the first class of Bluetooth signals so that at least one second riding vehicle turns on a lighting device of the second riding vehicle after receiving the first class of Bluetooth signals; wherein at least one second riding vehicle is a locked vehicle, and at least one second riding vehicle has turned on a function capable of receiving the first class of Bluetooth signals before receiving the first class of Bluetooth signals.

[0006] Furthermore, the above method also includes: turning on the first receiving function of the first riding vehicle according to the unlocking instruction; wherein the first receiving function is used to characterize that the first riding vehicle can receive the first type of Bluetooth signal; after receiving the first type of Bluetooth signal emitted by the first riding vehicle itself, turning on the lighting device of the first riding vehicle.

[0007] In the lighting method for the shared vehicle of the embodiment of the present invention, the vehicle server first issues an unlocking instruction according to the unlocking request of the user. After the first riding vehicle obtains the unlocking instruction, it opens the vehicle lock and sends a first type of Bluetooth signal. After the second riding vehicle in the locked state obtains the first type of Bluetooth signal, it turns on the lighting device. By establishing a Bluetooth connection between the first riding vehicle and the second riding vehicle, during the riding process after the first riding vehicle is unlocked, the second vehicle can provide lighting for the first vehicle, thereby improving the safety of vehicle driving and enhancing the user experience.

[0008] In a second aspect, a lighting method for a shared vehicle is provided. The method is applied to a second riding vehicle with a Bluetooth function. The second riding vehicle is communicatively connected to a vehicle server. The method includes: obtaining a first instruction sent by the vehicle server, and turning on a first receiving function of the second riding vehicle according to the first instruction; wherein the first receiving function is used to characterize that the second riding vehicle can receive a first type of Bluetooth signal sent by the first riding vehicle, and the first riding vehicle is a vehicle that opens the vehicle lock after receiving an unlocking instruction sent by the vehicle server. After receiving the unlocking instruction, the first riding vehicle turns on the first sending function and sends a first type of Bluetooth signal, and the first sending function is used to characterize that the first riding vehicle can send a first type of Bluetooth signal; receiving the first type of Bluetooth signal, and turning on the lighting device of the second riding vehicle according to the first type of Bluetooth signal.

[0009] Furthermore, the above method also includes: obtaining a second instruction sent by the vehicle server, and turning on a second receiving function and a second sending function of the second riding vehicle according to the second instruction; wherein the second receiving function is used to characterize that the second riding vehicle can receive a second type of Bluetooth signal, and the second sending function is used to characterize that the second riding vehicle can send a second type of Bluetooth signal, and the second type of Bluetooth signal includes the remaining power information of the vehicle that sends the signal.

[0010] Furthermore, the above-mentioned step of turning on the lighting device of the second riding vehicle according to the first type of Bluetooth signal includes: scanning and receiving the second type of Bluetooth signals emitted by other second riding vehicles; determining the remaining power information of other vehicles corresponding to the other second riding vehicles according to the second type of Bluetooth signals emitted by the other second riding vehicles; turning on the lighting device of the second riding vehicle according to the remaining power information of the second riding vehicle and the remaining power information of other vehicles.

[0011] Furthermore, the step of turning on the lighting device of the second riding vehicle based on the remaining power information of the second riding vehicle and the remaining power information of other vehicles includes: counting the number of vehicles in the remaining power information of other vehicles whose remaining power is greater than the remaining power of the second riding vehicle; determining whether the number of vehicles is less than a vehicle number threshold, and if so, turning on the lighting device of the vehicle.

[0012] The lighting method for the above-mentioned shared vehicle provided in the embodiment of the present application sends a first instruction to the second riding vehicle to instruct the second riding vehicle to turn on the Bluetooth signal receiving function. When the unlocked first riding vehicle passes by the second riding vehicle and sends a first type of Bluetooth signal, the second riding vehicle can automatically turn on the lighting device to provide more sufficient brightness for the first riding vehicle and ensure the safety of the riding users.

[0013] In a third aspect, a lighting method for a shared vehicle is provided, the method being applied to a vehicle server, the vehicle server being communicatively connected to at least two vehicles having a Bluetooth function, the method comprising: when the current time reaches a preset time, sending a first instruction to the at least two vehicles so that each of the at least two vehicles turns on a first receiving function; wherein the first receiving function is used to characterize that the at least two vehicles can receive a first type of Bluetooth signal; in response to an unlocking request issued by a user to a first riding vehicle among the at least two vehicles, sending an unlocking instruction to the first riding vehicle so that the first riding vehicle opens the vehicle lock, turns on the first sending function, and sends a first type of Bluetooth signal, and after a second riding vehicle among the at least two vehicles obtains the first type of Bluetooth signal, the second riding vehicle turns on a lighting device.

[0014] The lighting method for the above-mentioned shared vehicle provided in the embodiment of the present application sends a first instruction to at least two vehicles through the vehicle server after the preset time arrives, so that each of the at least two vehicles turns on the first receiving function, and after the user sends an unlocking request, sends an unlocking instruction to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, turns on the first sending function, and sends a first type of Bluetooth signal. In this way, along the way of the first riding vehicle, the locked vehicle that receives the first type of Bluetooth signal can automatically turn on the lighting device in time, thereby ensuring the riding safety of the riding user.

[0015] In a fourth aspect, a lighting device for a shared vehicle is provided, which is applied to a first riding vehicle with a Bluetooth communication function, and the first riding vehicle is communicatively connected to a vehicle server, and the device includes: an acquisition module, used to acquire an unlocking instruction sent by the vehicle server; wherein the unlocking instruction is an instruction generated by the vehicle server in response to a user's unlocking request for the first riding vehicle; an unlocking module, used to open the lock of the first riding vehicle according to the unlocking instruction, and to turn on a first sending function of the first riding vehicle; wherein the first sending function is used to characterize that the first riding vehicle can send a first type of Bluetooth signal; a signal sending module, used to send a first type of Bluetooth signal, so that at least one second riding vehicle turns on the lighting device of the second riding vehicle after receiving the first type of Bluetooth signal; wherein at least one second riding vehicle is a locked vehicle, and at least one second riding vehicle has turned on the function of being able to receive the first type of Bluetooth signal before receiving the first type of Bluetooth signal.

[0016] In a fifth aspect, a lighting device for a shared vehicle is provided, which is applied to a second riding vehicle with a Bluetooth function, and the second riding vehicle is communicatively connected to a vehicle server. The device includes: an acquisition module, used to acquire a first instruction sent by the vehicle server, and turn on a first receiving function of the second riding vehicle according to the first instruction; wherein the first receiving function is used to characterize that the second riding vehicle can receive a first type of Bluetooth signal sent by the first riding vehicle, and the first riding vehicle is a vehicle that opens the vehicle lock after receiving an unlocking instruction sent by the vehicle server, and the first riding vehicle turns on the first sending function and sends a first type of Bluetooth signal after receiving the unlocking instruction, and the first sending function is used to characterize that the first riding vehicle can send a first type of Bluetooth signal; an opening device, used to receive the first type of Bluetooth signal, and turn on the lighting device of the second riding vehicle according to the first type of Bluetooth signal.

[0017] In a sixth aspect, a lighting device for a shared vehicle is provided, which is applied to a vehicle server, which is communicatively connected to at least two vehicles with a Bluetooth function, and the device includes: a first instruction sending module, which is used to send a first instruction to at least two vehicles when the current time reaches a preset time, so that each of the at least two vehicles turns on a first receiving function; wherein the first receiving function is used to characterize that at least two vehicles can receive a first type of Bluetooth signal; an unlocking instruction sending module, which is used to respond to an unlocking request issued by a user to a first riding vehicle among the at least two vehicles, send an unlocking instruction to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, turns on the first sending function, and sends a first type of Bluetooth signal, and after the second riding vehicle among the at least two vehicles obtains the first type of Bluetooth signal, the second riding vehicle turns on the lighting device. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 A schematic diagram of the structure of a shared vehicle management system provided in an embodiment of the present application;

[0019] Figure 2 A flowchart of a lighting method for a shared vehicle provided in an embodiment of the present application;

[0020] Figure 3 A flowchart of another lighting method for a shared vehicle provided in an embodiment of the present application;

[0021] Figure 4 A flowchart of another lighting method for a shared vehicle provided in an embodiment of the present application;

[0022] Figure 5 A schematic diagram of the structure of a lighting device for a shared vehicle provided in an embodiment of the present application;

[0023] Figure 6A schematic diagram of the structure of another lighting device for a shared vehicle provided in an embodiment of the present application;

[0024] Figure 7 A schematic diagram of the structure of another lighting device for a shared vehicle provided in an embodiment of the present application;

[0025] Figure 8 A schematic diagram of the structure of an electronic device provided in an embodiment of the present application. DETAILED DESCRIPTION

[0026] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0027] Reference Figure 1 The structure diagram of the shared vehicle management system 100 is shown. The shared vehicle management system can be used to implement the lighting method and device of the shared vehicle of the embodiment of the present application.

[0028] The shared vehicle management system 100 includes a vehicle server 102 and a plurality of shared vehicles 104. The shared vehicles 104 are connected to the vehicle server 102 in communication. The shared vehicles 104 are equipped with lighting devices 106 for providing lighting. The shared vehicles 104 are equipped with vehicle processors 108. The vehicle processors 108 have a near field communication function for transmitting near field signals between two or more shared vehicles 104 that are close to each other. For example, the vehicle processors 108 can send and receive Bluetooth signals. The shared vehicles 104 can also be equipped with voice playback devices 110 for sending voice messages.

[0029] Figure 2 A flowchart of a lighting method for a shared vehicle provided in an embodiment of the present application is shown. The method is applied to a first riding vehicle with a Bluetooth communication function. The first riding vehicle is connected to a vehicle server for communication. The method includes the following steps:

[0030] S202: Acquire an unlocking instruction sent by the vehicle server; wherein the unlocking instruction is an instruction generated by the vehicle server in response to an unlocking request from a user for a first riding vehicle;

[0031] The vehicle server can be a single server or a server cluster. The vehicle server is connected to multiple shared vehicles in communication. The vehicle server sends instructions to the multiple shared vehicles connected to it, such as unlocking instructions, locking instructions, power display instructions, signal receiving and sending instructions, etc. The shared vehicles perform corresponding actions according to the various instructions sent by the vehicle server.

[0032] In actual applications, the user sends an unlocking request to the vehicle server. For example, the user uses a mobile terminal to scan the graphic code of the first riding vehicle or identify the first riding vehicle by other means. The unlocking request includes the identification of the first riding vehicle. After receiving the unlocking request, the vehicle server sends an unlocking instruction to the first riding vehicle.

[0033] S204: unlocking the first riding vehicle according to the unlocking instruction, and enabling a first sending function of the first riding vehicle; wherein the first sending function is used to indicate that the first riding vehicle can send a first type of Bluetooth signal;

[0034] After receiving the unlocking command sent by the vehicle server, the first riding vehicle unlocks the vehicle lock, and the user can now ride the vehicle.

[0035] In order to instruct other shared vehicles along the way to turn on their lights during the riding of the first riding vehicle, the first riding vehicle needs to send a first type of Bluetooth signal. Therefore, after receiving the unlocking instruction and unlocking, the first riding vehicle also turns on the first sending function.

[0036] S206: Sending a first-class Bluetooth signal so that at least one second riding vehicle turns on a lighting device of the second riding vehicle after receiving the first-class Bluetooth signal; wherein at least one second riding vehicle is a locked vehicle, and at least one second riding vehicle has turned on a function capable of receiving the first-class Bluetooth signal before receiving the first-class Bluetooth signal.

[0037] After the first sending function is turned on, the first riding vehicle sends the first type of Bluetooth signal during riding, and the sending method can be specifically sent at fixed time intervals. After receiving the first type of Bluetooth signal, the second riding vehicle in the locked state turns on the lighting device of the second riding vehicle.

[0038] Specifically, after receiving the instruction to start the function of receiving the first type of Bluetooth signal sent by the vehicle server, the second riding vehicle turns on the first type of Bluetooth signal. For example, the vehicle server sends the turn-on instruction at a fixed time every day, or the vehicle server sends the turn-on instruction according to the brightness of the area where the vehicle is located. After receiving the turn-on instruction, the second riding vehicle turns on the function of receiving the first type of Bluetooth signal. In this way, when the first riding vehicle passes by or is about to pass by the second riding vehicle, it can receive the first type of Bluetooth signal sent by the first riding vehicle, and then turn on the lighting device to instruct the first riding vehicle to pass safely.

[0039] In the lighting method for the shared vehicle of the embodiment of the present invention, the vehicle server first issues an unlocking instruction according to the unlocking request of the user. After the first riding vehicle obtains the unlocking instruction, it opens the vehicle lock and sends a first type of Bluetooth signal. After the second riding vehicle in the locked state obtains the first type of Bluetooth signal, it turns on the lighting device. By establishing a Bluetooth connection between the first riding vehicle and the second riding vehicle, during the riding process after the first riding vehicle is unlocked, the second vehicle can provide lighting for the first vehicle, thereby improving the safety of vehicle driving and enhancing the user experience.

[0040] Optionally, when the user completes the ride, a lock request is sent to the vehicle server. Specifically, the lock request can be sent by clicking a button on the mobile terminal indicating that the ride is completed. The vehicle server generates a lock instruction based on the lock request. Based on this, the above method provided in the embodiment of the present application also includes:

[0041] In response to the acquired lock instruction sent by the vehicle server, the vehicle lock of the first riding vehicle and the first sending function are turned off.

[0042] In the above process, after receiving the locking command, the first riding vehicle turns off the first sending function while closing the vehicle lock, thereby avoiding the surrounding locked vehicles from always keeping the lighting devices turned on due to the continuous sending of the first type of Bluetooth signal, thus saving vehicle power.

[0043] Optionally, during riding, the first riding vehicle can not only illuminate by surrounding locked vehicles but also turn on its own lighting device for lighting. Therefore, the above method further includes:

[0044] (1) turning on a first receiving function of the first riding vehicle according to an unlocking instruction; wherein the first receiving function is used to indicate that the first riding vehicle can receive a first type of Bluetooth signal;

[0045] (2) After receiving the first type of Bluetooth signal sent by the first riding vehicle itself, turn on the lighting device of the first riding vehicle.

[0046] During the above process, while the first riding vehicle sends the first type of Bluetooth signal to the second riding vehicle locked around it, it also receives the first type of Bluetooth signal itself, and then turns on the lighting device, ensuring that the lighting device is still available to illuminate the user when there are fewer vehicles around, further improving the safety of the user's riding.

[0047] Figure 3 A flowchart of another method for lighting a shared vehicle provided in an embodiment of the present application is shown. The method is applied to a second riding vehicle with a Bluetooth function, and the second riding vehicle is connected to a vehicle server for communication. The method includes the following steps:

[0048] S302: Obtain a first instruction sent by the vehicle server, and enable a first receiving function of the second riding vehicle according to the first instruction; wherein the first receiving function is used to indicate that the second riding vehicle can receive a first-class Bluetooth signal sent by the first riding vehicle, the first riding vehicle is a vehicle that unlocks a vehicle after receiving an unlock instruction sent by the vehicle server, and the first riding vehicle enables a first sending function and sends a first-class Bluetooth signal after receiving the unlock instruction, and the first sending function is used to indicate that the first riding vehicle can send a first-class Bluetooth signal;

[0049] The vehicle server sends the first instruction when the preset first instruction sending condition is met. The first instruction sending condition is used to indicate that when the condition is met, the user may have insufficient lighting when riding the shared vehicle, and more sufficient lighting needs to be provided for the shared vehicle. Specifically, the first instruction sending condition can be a fixed time every day, such as sending the first instruction at 8 pm every day. The first instruction sending condition can also be to determine the brightness of the environment where the first riding vehicle is located, and if the brightness is lower than the brightness threshold, the first instruction is sent.

[0050] After the vehicle server sends the first instruction, all riding vehicles that are in communication connection with the vehicle server receive the first instruction and turn on the first receiving function, which enables the riding vehicle to receive the first type of Bluetooth signal.

[0051] S304: receiving a first type of Bluetooth signal, and turning on a lighting device of a second riding vehicle according to the first type of Bluetooth signal.

[0052] On the premise that all riding vehicles have turned on the first receiving function, the first riding vehicle is unlocked after the user sends an unlocking request, and the first sending function is turned on to send the first type of Bluetooth signal to the second riding vehicle in a locked state within a preset range. Since the second riding vehicle has turned on the first receiving function in advance, as long as the first riding vehicle rides within the preset range around the second riding vehicle, it can receive the first type of Bluetooth signal and turn on the lighting device.

[0053] For example, there is a second cycling vehicle A at the first parking spot, and a second cycling vehicle B at the second parking spot. The first cycling vehicle first passes by the first parking spot, and vehicle A receives the first type of Bluetooth signal sent by the first cycling vehicle and turns on the lighting device. The first cycling vehicle continues to travel, leaves the first parking spot, and approaches the second parking spot. After reaching the preset range, vehicle B receives the first type of Bluetooth signal sent by the first cycling vehicle and turns on the lighting device of vehicle B.

[0054] The lighting method for the above-mentioned shared vehicle provided in the embodiment of the present application sends a first instruction to the second riding vehicle to instruct the second riding vehicle to turn on the Bluetooth signal receiving function. When the unlocked first riding vehicle passes by the second riding vehicle and sends a first type of Bluetooth signal, the second riding vehicle can automatically turn on the lighting device to provide more sufficient brightness for the first riding vehicle and ensure the safety of the riding users.

[0055] Optionally, in the specific implementation of step S304, the step of receiving the first type of Bluetooth signal may specifically include: scanning and receiving the first type of Bluetooth signal at every first predetermined time interval.

[0056] Optionally, when the first riding vehicle leaves the designated second riding vehicle, the second riding vehicle cannot receive the first type of Bluetooth signal, and the lighting device is turned off at this time to achieve energy saving. Based on this, the above method of the embodiment of the present application also includes: if the lighting device of the second riding vehicle is in an on state and does not scan the first type of Bluetooth signal at the current moment, turn off the lighting device.

[0057] In actual application scenarios, the number of vehicles at a parking spot is not fixed. There will be many locked vehicles stored at parking spots with large passenger flow, while there will be few locked vehicles stored at parking spots with small passenger flow. If the lighting device is turned on as soon as the first type of Bluetooth signal is received, for parking spots with a large number of locked vehicles, too many vehicles will turn on the lighting devices, resulting in a waste of resources. Therefore, a preset number of second riding vehicles can be selected to turn on the lighting devices. In terms of the selection method, the selection can be made based on the remaining power of the stored second riding vehicles, that is, only the second riding vehicles with a large remaining power can be turned on. Based on this, the method provided in the above embodiment of the present application can also include:

[0058] Obtain a second instruction sent by the vehicle server, and enable a second receiving function and a second sending function of the second riding vehicle according to the second instruction; wherein the second receiving function is used to characterize that the second riding vehicle can receive a second type of Bluetooth signal, and the second sending function is used to characterize that the second riding vehicle can send a second type of Bluetooth signal, and the second type of Bluetooth signal includes the remaining power information of the vehicle sending the signal.

[0059] Specifically, the second instruction is used to instruct the second riding vehicle to turn on the second receiving function and the second sending function. The signals received and sent by the second receiving function and the second sending function are second-class Bluetooth signals, which carry the remaining power information of the vehicle that sends the signal.

[0060] In some possible implementations, after receiving the first type of Bluetooth signal, the second riding vehicle sends out a second type of Bluetooth signal. Specifically, after receiving the first type of Bluetooth signal, the second riding vehicle needs to first determine the remaining power of all the second riding vehicles stored at the current parking point, and if the remaining power of the second riding vehicle is in the sequence of the first preset number of vehicles, the lighting device of the second riding vehicle is turned on, otherwise, it is not turned on.

[0061] In some possible implementations, the step of the second riding vehicle turning on the lighting device of the second riding vehicle according to the first type of Bluetooth signal may specifically include the following steps:

[0062] A101: Scan and receive the second type of Bluetooth signals sent by other second riding vehicles;

[0063] A102: determining the remaining power information of other vehicles corresponding to the other second riding vehicles according to the second type Bluetooth signal sent by the other second riding vehicles;

[0064] A103: Turn on the lighting device of the second riding vehicle according to the remaining power information of the second riding vehicle and the remaining power information of other vehicles.

[0065] After receiving the remaining power information of other vehicles, the remaining power information of other vehicles is compared with the remaining power information of the vehicle, and whether to turn on the lighting device is determined according to the comparison result. Specifically, whether to turn on the lighting device of the second riding vehicle can be determined by the following method:

[0066] (1) Count the number of vehicles whose remaining power is greater than the remaining power of the second riding vehicle in the remaining power information of other vehicles; (2) Determine whether the number of vehicles is less than a vehicle number threshold, and if so, turn on the vehicle's lighting device.

[0067] By using the above remaining power comparison method, the waste of resources caused by too many vehicles turning on the lighting devices is avoided, and the power of each vehicle is also saved.

[0068] The method provided in the embodiment of the present application is applied to the case where the light intensity is insufficient. In this scenario, accidents are likely to occur when the user is riding. Therefore, it is necessary to provide voice prompts to the riding user. Based on this, in the method provided in the embodiment of the present application, after the second riding vehicle receives the first type of Bluetooth signal, it is also possible to:

[0069] A voice prompt is issued to remind the riding user of the first riding vehicle to pay attention to riding safety.

[0070] In some possible implementations, in order to further save vehicle power and avoid noise caused by excessive sound, the above method of issuing a voice prompt may specifically include the following steps:

[0071] A201: sorting the remaining power of the second riding vehicle and the remaining power of other second riding vehicles in descending order of power to generate a power sequence;

[0072] A202: Determine whether the position of the remaining power of the second riding vehicle in the power sequence meets a preset position condition, and if so, issue a voice prompt.

[0073] In the above method, a voice prompt is issued while the lighting device is turned on, which can further enhance riding safety.

[0074] In some possible implementations, the method may further include: determining whether the brightness of the environment where the second riding vehicle is located is greater than a brightness threshold, and if so, not turning on the lighting device of the vehicle.

[0075] The above-mentioned shared vehicle lighting method provided in the embodiment of the present application does not turn on the lighting device when the environment in which the locked second vehicle is located is brighter, thereby achieving the effect of saving energy.

[0076] like Figure 4 As shown, another shared vehicle lighting method provided by an embodiment of the present application is applied to a vehicle server, and the vehicle server is connected to at least two vehicles with Bluetooth function for communication. The method includes the following steps:

[0077] S402: When the current time reaches a preset time, sending a first instruction to at least two vehicles so that each of the at least two vehicles turns on a first receiving function; wherein the first receiving function is used to indicate that the at least two vehicles can receive a first type of Bluetooth signal;

[0078] The at least two vehicles may all be locked vehicles, or all be unlocked vehicles, or one of them may be locked and the other unlocked. After receiving the first instruction, all the vehicles receiving the first instruction turn on the first receiving function so that the vehicles can receive the first type of Bluetooth signal sent by the unlocked vehicle.

[0079] S404: In response to an unlocking request issued by a user to a first riding vehicle among at least two vehicles, an unlocking instruction is sent to the first riding vehicle so that the first riding vehicle opens the vehicle lock, and a first sending function is turned on and a first type of Bluetooth signal is sent. After a second riding vehicle among the at least two vehicles obtains the first type of Bluetooth signal, the second riding vehicle turns on a lighting device.

[0080] On the premise that all riding vehicles have turned on the first receiving function, the first riding vehicle is unlocked after the user sends an unlocking request, and the first sending function is turned on to send the first type of Bluetooth signal to the second riding vehicle in a locked state within a preset range. Since the second riding vehicle has turned on the first receiving function in advance, as long as the first riding vehicle rides within the preset range around the second riding vehicle, it can receive the first type of Bluetooth signal and turn on the lighting device.

[0081] For example, there is a second cycling vehicle A at the first parking spot, and a second cycling vehicle B at the second parking spot. The first cycling vehicle first passes by the first parking spot, and vehicle A receives the first type of Bluetooth signal sent by the first cycling vehicle and turns on the lighting device. The first cycling vehicle continues to travel, leaves the first parking spot, and approaches the second parking spot. After reaching the preset range, vehicle B receives the first type of Bluetooth signal sent by the first cycling vehicle and turns on the lighting device of vehicle B.

[0082] The lighting method for the above-mentioned shared vehicle provided in the embodiment of the present application sends a first instruction to at least two vehicles through the vehicle server after the preset time arrives, so that each of the at least two vehicles turns on the first receiving function, and after the user sends an unlocking request, sends an unlocking instruction to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, turns on the first sending function, and sends a first type of Bluetooth signal. In this way, along the way of the first riding vehicle, the locked vehicle that receives the first type of Bluetooth signal can automatically turn on the lighting device in time, thereby ensuring the riding safety of the riding user.

[0083] In some possible implementations, the step of sending the first instruction to at least two vehicles may specifically include: determining whether the current time or the current environment meets the preset lighting conditions, and if so, sending the first instruction to the at least two vehicles.

[0084] In order to avoid wasting resources and power caused by too many vehicles turning on lighting devices at the same time, the above method also includes:

[0085] A second instruction is sent to at least two vehicles so that the at least two vehicles turn on the second sending function and the second receiving function after receiving the second instruction; wherein the second sending function is used to characterize that the vehicle can send a second type of Bluetooth signal, and the second receiving function is used to characterize that the vehicle can receive a second type of Bluetooth signal, and the second type of Bluetooth signal carries the remaining power of the vehicle sending the signal, and after receiving the second type of Bluetooth signal, the at least two vehicles turn on the lighting device according to the remaining power carried in the second type of Bluetooth signal.

[0086] Before turning on the lighting device, the above method also determines whether to turn on the lighting device based on the remaining power of the vehicle, which can effectively save the power of the vehicle and avoid the waste of resources.

[0087] In order to further clarify the above-mentioned shared vehicle lighting method provided in the embodiment of the present application, the following is an example of an actual application scenario:

[0088] Step 1: In a first set time period (eg, 22:00-05:00), the vehicle server sends a first instruction to turn on the Bluetooth device to the shared vehicle, so that the Bluetooth device of the shared vehicle can receive a specific Bluetooth signal.

[0089] The shared vehicle in the embodiment of the present application may specifically be a shared riding vehicle.

[0090] Step 2: The user scans the QR code. After the vehicle server receives the unlocking request sent by the user's smart terminal, the vehicle server sends an unlocking instruction to the shared vehicle, and the shared vehicle is unlocked;

[0091] Step 3: During the second set time period, the Internet of Vehicles server also sends a second instruction to the shared vehicle to turn on the Bluetooth device, so that the Bluetooth device of the shared vehicle can send a specific Bluetooth signal; that is, during the specific time period, the shared vehicle in the locked state can receive the specific Bluetooth signal, and the shared vehicle in the unlocked state can send and receive the specific Bluetooth signal; receiving a specific Bluetooth signal means that the shared vehicle in the locked state can scan the specific Bluetooth signal, and there is no need to establish a Bluetooth connection;

[0092] The second set time period may be the same as or different from the first set time period.

[0093] Step 4: When the specific Bluetooth signal is received by the shared vehicles in the locked state, it means that these shared vehicles are close to the unlocked shared vehicles. These shared vehicles control the headlights to turn on to illuminate the road, making it easier for users to ride.

[0094] Step 5: When the specific Bluetooth signal cannot be received by the shared vehicles in the locked state, it means that these shared vehicles are far away from the unlocked shared vehicles, and these shared vehicles control the headlights to turn off to save battery power;

[0095] Step 6: When the specific Bluetooth signal is received by the shared vehicle in the unlocked state (the Bluetooth signal is received by itself), the headlights of the shared vehicle are turned on to illuminate the road, making it convenient for the user to ride; when the user returns the vehicle.

[0096] Step 7: The vehicle server sends a locking instruction to the shared vehicle, and the shared vehicle is locked. The vehicle server also sends an instruction to turn off the Bluetooth device to the shared vehicle, so that the Bluetooth device of the shared vehicle cannot send specific Bluetooth signals;

[0097] Step 8: The vehicle server also sends a second instruction to the shared vehicle, for instructing the shared vehicle to send a preset Bluetooth signal at night.

[0098] For example, in the evening, there are usually many cars parked at a parking spot. If all vehicles at the same parking spot turn on their headlights, it is unnecessary and will lead to a waste of energy. Therefore, the vehicle server sends a second instruction to turn on the Bluetooth device to the shared vehicle, so that the Bluetooth device of the shared vehicle can send a preset Bluetooth signal (the Bluetooth signal is different from the specific Bluetooth signal sent after the shared vehicle is unlocked), which will carry the current power of the shared vehicle. Vehicles in the same parking spot can scan the Bluetooth signal with the current power from each other, and compare the power of other scanned vehicles with their own power. If there are N (N≥1) shared vehicles with higher power than their own power, their own Bluetooth devices will be turned off. In this way, among all the vehicles at the same parking spot, only N shared vehicles with higher power will have their Bluetooth devices turned on. When the unlocked shared vehicle drives near the parking spot, the N shared vehicles can receive the specific Bluetooth signal, thereby turning on the headlights to facilitate users to ride. If there is only one car at the parking spot, no other Bluetooth signals will be detected and the Bluetooth device will not be turned off. When the unlocked shared vehicle drives near the parking spot, the shared vehicle can receive specific Bluetooth signals and turn on the headlights to facilitate users' riding.

[0099] Step 9: Remind the user to ride carefully through voice.

[0100] In specific implementation, the remaining power of the own vehicle and surrounding vehicles can be determined first, and only one or more vehicles with the highest remaining power will issue a prompt voice.

[0101] The content of the voice prompt may also include a reminder of the remaining power of the riding vehicle. For example, if the power is less than a preset value, the user is reminded of the remaining power and the number of kilometers that can be ridden (for example, it can be set to 3 kilometers).

[0102] Based on the above method embodiment, the embodiment of the present application also provides a lighting device for a shared vehicle, which is applied to a first riding vehicle with a Bluetooth communication function, and the first riding vehicle is connected to a vehicle server for communication, see Figure 5 As shown, the device comprises:

[0103] The acquisition module 502 is used to acquire the unlocking instruction sent by the vehicle server; wherein the unlocking instruction is an instruction generated by the vehicle server in response to the unlocking request of the user for the first riding vehicle;

[0104] The unlocking module 504 is used to unlock the lock of the first riding vehicle according to the unlocking instruction, and to enable the first sending function of the first riding vehicle; wherein the first sending function is used to indicate that the first riding vehicle can send a first type of Bluetooth signal;

[0105] The signal sending module 506 is used to send a first-class Bluetooth signal so that at least one second riding vehicle turns on the lighting device of the second riding vehicle after receiving the first-class Bluetooth signal; wherein at least one second riding vehicle is a locked vehicle, and at least one second riding vehicle has turned on the function of being able to receive the first-class Bluetooth signal before receiving the first-class Bluetooth signal.

[0106] In the lighting device of the shared vehicle in the embodiment of the present invention, the vehicle server first sends an unlocking instruction according to the unlocking request of the user. After the first riding vehicle obtains the unlocking instruction, it opens the vehicle lock and sends a first type of Bluetooth signal. After the second riding vehicle in the locked state obtains the first type of Bluetooth signal, it turns on the lighting device. By establishing a Bluetooth connection between the first riding vehicle and the second riding vehicle, during the riding process after the first riding vehicle is unlocked, the second vehicle can provide lighting for the first vehicle, thereby improving the safety of vehicle driving and enhancing the user experience.

[0107] The above-mentioned device is also used to: turn on the first receiving function of the first riding vehicle according to the unlocking instruction; wherein the first receiving function is used to indicate that the first riding vehicle can receive the first type of Bluetooth signal; after receiving the first type of Bluetooth signal emitted by the first riding vehicle itself, turn on the lighting device of the first riding vehicle.

[0108] The embodiment of the present application also provides another lighting device for a shared vehicle, which is applied to a second riding vehicle with a Bluetooth function, and the second riding vehicle is connected to the vehicle server in communication, such as Figure 6 As shown, the device comprises:

[0109] The acquisition module 602 is used to acquire a first instruction sent by the vehicle server, and to enable a first receiving function of the second riding vehicle according to the first instruction; wherein the first receiving function is used to indicate that the second riding vehicle can receive a first type of Bluetooth signal sent by the first riding vehicle, the first riding vehicle is a vehicle that unlocks the vehicle after receiving an unlock instruction sent by the vehicle server, and the first riding vehicle enables a first sending function and sends a first type of Bluetooth signal after receiving the unlock instruction, and the first sending function is used to indicate that the first riding vehicle can send a first type of Bluetooth signal;

[0110] The opening device 604 is used to receive the first type of Bluetooth signal and turn on the lighting device of the second riding vehicle according to the first type of Bluetooth signal.

[0111] The lighting device of the above-mentioned shared vehicle provided in the embodiment of the present application sends a first instruction to the second riding vehicle to instruct the second riding vehicle to turn on the Bluetooth signal receiving function. When the unlocked first riding vehicle passes by the second riding vehicle and sends a first type of Bluetooth signal, the second riding vehicle can automatically turn on the lighting device to provide more sufficient brightness for the first riding vehicle and ensure the safety of the riding users.

[0112] The above-mentioned device is also used to: obtain a second instruction sent by the vehicle server, and start a second receiving function and a second sending function of the second riding vehicle according to the second instruction; wherein the second receiving function is used to characterize that the second riding vehicle can receive a second type of Bluetooth signal, and the second sending function is used to characterize that the second riding vehicle can send a second type of Bluetooth signal, and the second type of Bluetooth signal includes the remaining power information of the vehicle that sends the signal.

[0113] The above process of turning on the lighting device of the second riding vehicle according to the first type of Bluetooth signal includes: scanning and receiving the second type of Bluetooth signals emitted by other second riding vehicles; determining the remaining power information of other vehicles corresponding to the other second riding vehicles according to the second type of Bluetooth signals emitted by the other second riding vehicles; and turning on the lighting device of the second riding vehicle according to the remaining power information of the second riding vehicle and the remaining power information of the other vehicles.

[0114] The above process of turning on the lighting device of the second riding vehicle based on the remaining power information of the second riding vehicle and the remaining power information of other vehicles includes: counting the number of vehicles in the remaining power information of other vehicles whose remaining power is greater than the remaining power of the second riding vehicle; determining whether the number of vehicles is less than a vehicle number threshold, and if so, turning on the lighting device of the vehicle.

[0115] The embodiment of the present application also provides another lighting device for a shared vehicle, which is applied to a vehicle server, and the vehicle server is connected to communicate with at least two vehicles having a Bluetooth function, such as Figure 7 As shown, the device comprises:

[0116] A first instruction sending module 702 is used to send a first instruction to at least two vehicles when the current time reaches a preset time, so that each of the at least two vehicles turns on a first receiving function; wherein the first receiving function is used to indicate that the at least two vehicles can receive a first type of Bluetooth signal;

[0117] The unlocking instruction sending module 704 is used to respond to the unlocking request issued by the user to the first riding vehicle among the at least two vehicles, send an unlocking instruction to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, and turns on the first sending function and sends a first type of Bluetooth signal. After the second riding vehicle among the at least two vehicles obtains the first type of Bluetooth signal, the second riding vehicle turns on the lighting device.

[0118] The lighting device of the above-mentioned shared vehicle provided in the embodiment of the present application sends a first instruction to at least two vehicles through the vehicle server after the preset time arrives, so that each of the at least two vehicles turns on the first receiving function, and after the user sends an unlocking request, sends an unlocking instruction to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, turns on the first sending function, and sends a first type of Bluetooth signal. In this way, along the way of the first riding vehicle, the locked vehicles that receive the first type of Bluetooth signal can automatically turn on the lighting device in time, thereby ensuring the riding safety of the riding user.

[0119] The lighting device for a shared vehicle provided in the embodiment of the present application has the same implementation principle and technical effects as those of the aforementioned method embodiment. For the sake of brief description, for parts not mentioned in the embodiment of the above-mentioned device, reference may be made to the corresponding contents in the aforementioned lighting method embodiment of a shared vehicle.

[0120] The present application also provides an electronic device, such as Figure 8 As shown, it is a schematic diagram of the structure of the electronic device, wherein the electronic device includes a processor 1501 and a memory 1502, the memory 1502 stores computer executable instructions that can be executed by the processor 1501, and the processor 1501 executes the computer executable instructions to implement the above-mentioned shared vehicle lighting method.

[0121] exist Figure 8 In the illustrated embodiment, the electronic device further includes a bus 1503 and a communication interface 1504 , wherein the processor 1501 , the communication interface 1504 and the memory 1502 are connected via the bus 1503 .

[0122] Among them, the memory 1502 may include a high-speed random access memory (RAM), and may also include a non-volatile memory (non-volatile memory), such as at least one disk storage. The communication connection between the system network element and at least one other network element is realized through at least one communication interface 1504 (which can be wired or wireless), and the Internet, wide area network, local area network, metropolitan area network, etc. can be used. The bus 1503 can be an ISA (Industry Standard Architecture) bus, a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, etc. The bus 1503 can be divided into an address bus, a data bus, a control bus, etc. For ease of representation, Figure 8Only one bidirectional arrow is used in the diagram, but this does not mean that there is only one bus or only one type of bus.

[0123] Processor 1501 may be an integrated circuit chip with signal processing capabilities. In the implementation process, each step of the above method can be completed by the hardware integrated logic circuit or software instructions in the processor 1501. The above processor 1501 can be a general-purpose processor, including a central processing unit (CPU), a network processor (NP), etc.; it can also be a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components. The general processor can be a microprocessor or the processor can also be any conventional processor. The steps of the method disclosed in the embodiment of the present application can be directly embodied as a hardware decoding processor to perform, or the hardware and software modules in the decoding processor are combined and performed. The software module can be located in a mature storage medium in the field such as a random access memory, a flash memory, a read-only memory, a programmable read-only memory or an electrically erasable programmable memory, a register, etc. The storage medium is located in the memory, and the processor 1501 reads the information in the memory and completes the steps of the lighting method for a shared vehicle in the aforementioned embodiment in combination with its hardware.

[0124] An embodiment of the present application also provides a computer-readable storage medium, which stores computer-executable instructions. When the computer-executable instructions are called and executed by a processor, the computer-executable instructions prompt the processor to implement the above-mentioned shared vehicle lighting method. The specific implementation can be found in the aforementioned method embodiment, which will not be repeated here.

[0125] The computer program product of the lighting method, device and electronic device for a shared vehicle provided in the embodiments of the present application includes a computer-readable storage medium storing program code. The instructions included in the program code can be used to execute the methods described in the previous method embodiments. The specific implementation can be found in the method embodiments, which will not be repeated here.

[0126] Although the present invention is disclosed as above, the present invention is not limited thereto. Any person skilled in the art can make various changes and modifications without departing from the spirit and scope of the present invention. Therefore, the protection scope of the present invention shall be subject to the scope defined by the claims.

Claims

1. A lighting method for a shared vehicle, characterized in that: The method is applied to a first riding vehicle having a Bluetooth communication function, wherein the first riding vehicle is communicatively connected to a vehicle server, and the method includes: Obtaining an unlocking instruction sent by the vehicle server; wherein the unlocking instruction is an instruction generated by the vehicle server in response to the user's unlocking request for the first riding vehicle; unlocking the first riding vehicle according to the unlocking instruction, and enabling a first sending function of the first riding vehicle; wherein the first sending function is used to indicate that the first riding vehicle can send a first type of Bluetooth signal; The first type of Bluetooth signal is emitted so that at least one second riding vehicle turns on a lighting device of the second riding vehicle after receiving the first type of Bluetooth signal; wherein the at least one second riding vehicle is a locked vehicle, and the at least one second riding vehicle has turned on a function capable of receiving the first type of Bluetooth signal before receiving the first type of Bluetooth signal.

2. The lighting method for a shared vehicle according to claim 1, characterized in that: The method further comprises: Turning on a first receiving function of the first riding vehicle according to the unlocking instruction; wherein the first receiving function is used to indicate that the first riding vehicle can receive the first type of Bluetooth signal; After receiving the first type of Bluetooth signal sent by the first riding vehicle itself, the lighting device of the first riding vehicle is turned on.

3. A lighting method for a shared vehicle, characterized in that: The method is applied to a second riding vehicle having a Bluetooth function, the second riding vehicle being communicatively connected to a vehicle server, and the method comprises: Obtaining a first instruction sent by the vehicle server, and activating a first receiving function of the second riding vehicle according to the first instruction; wherein the first receiving function is used to indicate that the second riding vehicle can receive a first type of Bluetooth signal emitted by the first riding vehicle, the first riding vehicle is a vehicle that unlocks its lock after receiving an unlock instruction sent by the vehicle server, the first riding vehicle activates a first sending function and emits the first type of Bluetooth signal after receiving the unlock instruction, and the first sending function is used to indicate that the first riding vehicle can emit the first type of Bluetooth signal; the second riding vehicle is a vehicle in a locked state within a preset range of the first riding vehicle; The first type of Bluetooth signal is received, and a lighting device of the second riding vehicle is turned on according to the first type of Bluetooth signal.

4. The lighting method for a shared vehicle as claimed in claim 3, characterized in that: The method further comprises: Obtain a second instruction sent by the vehicle server, and enable a second receiving function and a second sending function of the second riding vehicle according to the second instruction; wherein the second receiving function is used to characterize that the second riding vehicle can receive a second type of Bluetooth signal, and the second sending function is used to characterize that the second riding vehicle can send out the second type of Bluetooth signal, and the second type of Bluetooth signal includes the remaining power information of the vehicle sending the signal.

5. The lighting method for a shared vehicle as claimed in claim 4, characterized in that: The step of turning on the lighting device of the second riding vehicle according to the first type of Bluetooth signal includes: Scanning and receiving the second type of Bluetooth signal sent by other second riding vehicles; Determining the remaining power information of other vehicles corresponding to the other second riding vehicles according to the second type of Bluetooth signals sent by the other second riding vehicles; The lighting device of the second riding vehicle is turned on according to the remaining power information of the second riding vehicle and the remaining power information of the other vehicles.

6. The lighting method for a shared vehicle as claimed in claim 5, characterized in that: The step of turning on the lighting device of the second riding vehicle according to the remaining power information of the second riding vehicle and the remaining power information of the other vehicles includes: Counting the number of vehicles in the remaining power information of the other vehicles whose remaining power is greater than the remaining power of the second riding vehicle; It is determined whether the number of vehicles is less than a vehicle number threshold, and if so, lighting devices of the vehicles are turned on.

7. A lighting method for a shared vehicle, characterized in that: The method is applied to a vehicle server, the vehicle server is communicatively connected with at least two vehicles having a Bluetooth function, and the method comprises: When the current time reaches the preset time, sending a first instruction to the at least two vehicles so that each of the at least two vehicles turns on a first receiving function; wherein the first receiving function is used to indicate that the at least two vehicles can receive a first type of Bluetooth signal; In response to an unlocking request issued by a user to a first riding vehicle among the at least two vehicles, an unlocking instruction is sent to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, turns on the first sending function, and sends the first type of Bluetooth signal. After a second riding vehicle among the at least two vehicles obtains the first type of Bluetooth signal, the second riding vehicle turns on the lighting device; the second riding vehicle is a vehicle in a locked state within a preset range of the first riding vehicle.

8. A lighting device for a shared vehicle, characterized in that: The device is applied to a first riding vehicle with a Bluetooth communication function, the first riding vehicle is connected to a vehicle server for communication, and the device includes: An acquisition module, configured to acquire an unlocking instruction sent by the vehicle server; wherein the unlocking instruction is an instruction generated by the vehicle server in response to an unlocking request from a user for the first riding vehicle; an unlocking module, used to unlock the lock of the first riding vehicle according to the unlocking instruction, and to enable a first sending function of the first riding vehicle; wherein the first sending function is used to indicate that the first riding vehicle can send a first type of Bluetooth signal; The signal sending module is used to send the first type of Bluetooth signal so that at least one second riding vehicle turns on the lighting device of the second riding vehicle after receiving the first type of Bluetooth signal; wherein the at least one second riding vehicle is a locked vehicle, and the at least one second riding vehicle has turned on a function capable of receiving the first type of Bluetooth signal before receiving the first type of Bluetooth signal.

9. A lighting device for a shared vehicle, characterized in that: The device is applied to a second riding vehicle with a Bluetooth function, the second riding vehicle is connected to a vehicle server for communication, and the device includes: an acquisition module, configured to acquire a first instruction sent by the vehicle server, and enable a first receiving function of the second riding vehicle according to the first instruction; wherein the first receiving function is used to indicate that the second riding vehicle can receive a first type of Bluetooth signal sent by the first riding vehicle, the first riding vehicle is a vehicle that unlocks a vehicle lock after receiving an unlock instruction sent by the vehicle server, the first riding vehicle enables a first sending function and sends the first type of Bluetooth signal after receiving the unlock instruction, and the first sending function is used to indicate that the first riding vehicle can send the first type of Bluetooth signal; the second riding vehicle is a vehicle in a locked state within a preset range of the first riding vehicle; The activation device is used to receive the first type of Bluetooth signal and activate the lighting device of the second riding vehicle according to the first type of Bluetooth signal.

10. A lighting device for a shared vehicle, characterized in that: The device is applied to a vehicle server, the vehicle server is communicatively connected with at least two vehicles having a Bluetooth function, and the device comprises: A first instruction sending module, configured to send a first instruction to the at least two vehicles when the current time reaches a preset time, so that each of the at least two vehicles turns on a first receiving function; wherein the first receiving function is used to indicate that the at least two vehicles can receive a first type of Bluetooth signal; The unlocking instruction sending module is used to respond to an unlocking request issued by a user to a first riding vehicle among the at least two vehicles, send an unlocking instruction to the first riding vehicle, so that the first riding vehicle opens the vehicle lock, and turns on the first sending function and sends the first type of Bluetooth signal. After the second riding vehicle among the at least two vehicles obtains the first type of Bluetooth signal, the second riding vehicle turns on the lighting device; the second riding vehicle is a vehicle in a locked state within a preset range of the first riding vehicle.

Citation Information

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