Use strategies, devices, apparatuses, media, and vehicles for sunshade curtains
By monitoring changes in the sunshade's status and triggering signals, as well as vehicle information, the system automatically adjusts the opening or closing of the sunshade, solving the problem of low intelligence in sunshade adjustment and improving the vehicle's intelligence level and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- GREAT WALL MOTOR CO LTD
- Filing Date
- 2023-03-09
- Publication Date
- 2026-04-17
AI Technical Summary
In existing technologies, the adjustment of sunshades has a low level of intelligence, requiring users to manually control their opening and closing, resulting in a low level of vehicle intelligence and a poor user experience.
By monitoring changes in the sunshade's status and triggering signals, and combining this information with the sunshade's status, vehicle information, speed, and wind speed, the system automatically determines the sunshade's adjustment mode and sends an adjustment signal to the drive mechanism to control the sunshade's opening or closing.
It enables autonomous adjustment of the sunshade, reduces manual intervention, improves the vehicle's intelligent control performance, and optimizes the sunshade's performance.
Smart Images

Figure CN116476608B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of vehicle technology, and more particularly to a sunshade usage strategy, device, equipment, medium, and vehicle. Background Technology
[0002] To protect against hot weather, keep out mosquitoes, or for other needs, car windows or sunroofs are usually equipped with sunshades. Compared to the currently popular window tinting, sunshades provide a better effect in blocking the sun and blocking external sunlight, and by retracting the sunshade, sunlight can be allowed to shine through.
[0003] However, in existing technologies, sunshades are usually adjusted when the windows or sunroof are closed. For different driving scenarios, users need to manually control the opening and closing of sunshades and windows according to the external environment of the vehicle, resulting in a low level of vehicle intelligence and a poor user experience. Summary of the Invention
[0004] In view of this, the purpose of this application is to propose a sunshade curtain usage strategy, device, equipment, medium and vehicle to solve the problem of low level of intelligence in sunshade curtain adjustment mentioned in the background art.
[0005] To achieve the above objectives, this application provides a strategy for using a sunshade curtain, wherein the sunshade curtain is applied to a vehicle, the vehicle including a drive mechanism for controlling the opening and closing of the sunshade curtain, and the strategy includes:
[0006] Based on the detected sunshade status change trigger signal, determine the sunshade switching trend information, and obtain sunshade status information and vehicle information.
[0007] The sunshade adjustment mode is determined based on the sunshade switching trend information, sunshade status information, and vehicle information.
[0008] An adjustment signal corresponding to the sunshade adjustment mode is sent to the drive mechanism so that the drive mechanism controls the sunshade to open or close.
[0009] Furthermore, the vehicle information includes the vehicle's speed information and the wind speed information around the vehicle.
[0010] The step of determining the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information includes:
[0011] If the sunshade switching trend information is "unfolded", the sunshade status information is "folded", and the vehicle speed information and / or the wind speed information are within the threshold range, then the sunshade adjustment mode is determined to be the unfolded mode.
[0012] If the sunshade switching trend information is unfolded, the sunshade status information is unfolded, and the vehicle speed information and / or the wind speed information is greater than the threshold range, then the sunshade adjustment mode is determined to be the folding mode.
[0013] If the sunshade switching trend information is "expanded", the sunshade status information is "closed", and the vehicle speed information and / or the wind speed information are greater than the threshold range, then the sunshade adjustment mode is determined to be the "closed" mode.
[0014] Furthermore, the sunshade state change trigger signal includes vehicle body greenery coverage information, vehicle body solar radiation information, and temperature and humidity information; the determination of sunshade switching trend information based on the monitored sunshade state change trigger signal includes:
[0015] If at least one of the following information—the green vegetation coverage around the vehicle body, the solar radiation of the vehicle body, and the temperature and humidity—is greater than a set range, then the sunshade switching trend information is determined to be unfolded.
[0016] If the information on the greenery coverage around the vehicle, the vehicle's solar radiation, and the temperature and humidity are all within the set range, then the sunshade switching trend information is determined to be folding.
[0017] Furthermore, the trigger signal for the change in the state of the sunshade includes target voice information;
[0018] The method of determining the sunshade switching trend information based on the monitored sunshade status change trigger signal also includes:
[0019] In response to the identification of target voice information in the voice information in the passenger cabin, the sunshade switching trend information is extracted based on the target voice information and deployed.
[0020] Further, determining the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information includes:
[0021] Based on the sunshade switching trend information, sunshade status information, and vehicle information, determine the sunshade pre-adjustment mode;
[0022] The human-machine interaction information containing the sunshade pre-adjustment mode is sent to the vehicle-machine interaction platform for the user to select.
[0023] The adjustment mode of the sunshade is determined based on the user's selection.
[0024] Furthermore, the determination of the sunshade switching trend information based on the monitored sunshade state change trigger signal includes:
[0025] In response to the recognition commands fed back by the user on the vehicle-mounted interactive platform, the system monitors the trigger signals of changes in the sunshade status, wherein the recognition commands include mosquito repellent recognition commands and sun protection recognition commands.
[0026] Based on the same inventive concept, this application also provides a control device for a sunshade curtain, comprising:
[0027] The sensing module is configured to determine the sunshade switching trend information based on the detected sunshade status change trigger signal, and to obtain sunshade status information and vehicle information.
[0028] The control module is configured to determine the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information.
[0029] The sending module is configured to send an adjustment signal corresponding to the sunshade adjustment mode to the drive mechanism, so that the drive mechanism controls the sunshade to open or close.
[0030] Based on the same inventive concept, this disclosure also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable by the processor, wherein the processor implements the method described above when executing the computer program.
[0031] Based on the same inventive concept, this disclosure also provides a non-transitory computer-readable storage medium that stores computer instructions for causing a computer to perform the method described above.
[0032] As can be seen from the above, the sunshade usage strategy provided in this application involves the vehicle's central control unit detecting trigger signals that may cause changes in the sunshade's state to determine the switching trend information of the sunshade. By combining the sunshade's state information, switching trend information, and vehicle information, a comprehensive judgment is made to determine the sunshade adjustment mode, and an adjustment signal corresponding to the sunshade adjustment mode is sent to the drive mechanism. This causes the drive mechanism to control the sunshade to open or close, making the opening or closing conditions of the sunshade more reasonable and optimizing the vehicle's intelligent operation logic. Furthermore, the above process enables the sunshade to autonomously adjust its opening or closing, reducing manual intervention and improving the overall intelligent control performance of the vehicle, thus ensuring the sunshade has a good usage effect. Attached Figure Description
[0033] To more clearly illustrate the technical solutions in this application or related technologies, the drawings used in the description of the embodiments or related technologies will be briefly introduced below. Obviously, the drawings described below are only embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0034] Figure 1 This is a flowchart illustrating a method for using a sunshade curtain in one embodiment of this application;
[0035] Figure 2 This is a flowchart illustrating a method for using a sunshade curtain in one embodiment of this application;
[0036] Figure 3 This is a schematic diagram of the control device for the sunshade curtain in an embodiment of this application;
[0037] Figure 4 This is a schematic diagram of the hardware structure of the electronic device in the embodiments of this application.
[0038] Explanation of reference numerals in the attached figures
[0039] 1. Sensing module; 2. Control module; 3. Transmission module;
[0040] 1010, Processor; 1020, Memory; 1030, Input / Output Interface; 1040, Communication Interface; 1050, Bus. Detailed Implementation
[0041] To make the objectives, technical solutions, and advantages of this application clearer, the following detailed description is provided in conjunction with specific embodiments and the accompanying drawings.
[0042] It should be noted that, unless otherwise defined, the technical or scientific terms used in the embodiments of this application should have the ordinary meaning understood by one of ordinary skill in the art to which this application pertains. The terms "first," "second," and similar terms used in the embodiments of this application do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as "comprising" or "including" mean that the element or object preceding the word encompasses the elements or objects listed after the word and their equivalents, without excluding other elements or objects. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. Terms such as "upper," "lower," "left," and "right" are only used to indicate relative positional relationships; when the absolute position of the described object changes, the relative positional relationship may also change accordingly.
[0043] The embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0044] One or more embodiments of this application provide a strategy for using a sunshade, wherein the sunshade is applied to the window or sunroof of a vehicle, and the vehicle includes a drive mechanism for controlling the opening and closing of the sunshade.
[0045] like Figure 1 As shown, the usage strategy of the sunshade curtain provided in this application includes:
[0046] S100 determines the sunshade switching trend information based on the detected sunshade status change trigger signal, and obtains sunshade status information and vehicle information.
[0047] S200, based on the sunshade switching trend information, sunshade status information and vehicle information, determine the sunshade adjustment mode.
[0048] S300, send an adjustment signal corresponding to the sunshade adjustment mode to the drive mechanism so that the drive mechanism controls the sunshade to open or close.
[0049] As can be seen from the above description, the sunshade usage strategy provided in this application involves the vehicle's central control unit detecting trigger signals that may cause changes in the sunshade's state, determining the switching trend information of the sunshade, and then determining the sunshade adjustment mode based on the sunshade switching trend information, sunshade state information, and vehicle information. The system then sends an adjustment signal corresponding to the sunshade adjustment mode to the drive mechanism, enabling the drive mechanism to control the sunshade to open or close. This process allows for the autonomous adjustment and opening or closing of the sunshade, reducing manual intervention and improving the overall intelligent control performance of the vehicle, thus ensuring the sunshade has a good usage effect.
[0050] Meanwhile, since the usage strategy provided in this application combines the sunshade's status information, switching trend information, and vehicle information to make a comprehensive judgment before performing the switching action on the sunshade, the conditions for opening or closing the sunshade are set more reasonably. In addition, the usage strategy provided in this application determines the adjustment mode of the sunshade based on the sunshade's status and vehicle information. Under the premise of avoiding interference between the sunshade and the window structure, the sunshade can meet the usage needs in specific scenarios, optimizing the applicable scope and usage scenario judgment logic of the sunshade.
[0051] It should be noted that the drive mechanism mentioned in this application refers to the auxiliary equipment that drives the sunshade to rise, fall, and retract. The vehicle's central control unit controls the drive mechanism to raise or retract the sunshade, thus switching the open / closed state of the sunshade. Drive mechanisms in different locations are controlled by controllers located on the corresponding parts of the vehicle body. For example, a door controller on the vehicle controls the raising and lowering of the windows and sunshades, while a sunroof controller controls the opening and closing of the sunroof sunshade. Here, the sunshade can be a sunshade for the side windows of the vehicle or a sunroof sunshade. The sunshade can use existing, mature light-blocking mesh ventilation materials, which will not be elaborated upon in this embodiment. Furthermore, in the various embodiments of this application, the unfolded state of the sunshade refers to the state where the sunshade covers the sunroof or a window, and the retracted state refers to the state where the sunshade is rolled up and exposes the sunroof or a window.
[0052] In some embodiments, vehicle information includes vehicle speed information and wind speed information around the vehicle. The vehicle speed information and wind speed information around the vehicle can be obtained by sensors installed on the vehicle body. The wind speed information around the vehicle can also be obtained by querying the current location through big data after the vehicle is connected to the cloud platform. This embodiment does not make an absolute limitation on this.
[0053] Based on the above description, in step S200, the sunshade adjustment mode is determined according to the sunshade switching trend information, sunshade status information, and vehicle information, including:
[0054] In scenario S2a, in response to the sunshade switching trend information being unfolded, the sunshade state information being folded, and the vehicle speed information and / or the wind speed information being within the threshold range, the sunshade adjustment mode is determined to be unfolded mode.
[0055] In scenario S2b, in response to the sunshade switching trend information being unfolded, the sunshade status information being unfolded, and the vehicle speed information and / or the wind speed information being greater than the threshold range, the sunshade adjustment mode is determined to be the folding mode.
[0056] In scenario S2c, if the sunshade switching trend information is "expanded", the sunshade status information is "closed", and the vehicle speed information and / or the wind speed information are greater than the threshold range, then the sunshade adjustment mode is determined to be the "closed" mode.
[0057] The above describes the judgment logic for the sunshade adjustment mode in three different scenarios. Among them, the sunshade switching trend information refers to the information that the vehicle determines whether the sunshade should be opened or closed after sensing the surrounding environment or receiving voice information. The sunshade status information refers to whether the sunshade is currently in the opened or closed state.
[0058] In the scenarios described above, when vehicle speed and wind speed exceed the set threshold range, and the vehicle window is open, the pressure difference between the inside and outside of the vehicle is significant. If the sunshade is also open, it may be blown off the vehicle due to this pressure difference. Therefore, when vehicle speed and wind speed exceed the set threshold range, the sunshade should not be opened with the window open. The threshold ranges for vehicle speed and wind speed can be set based on factors such as the installation strength of the sunshade and the size of the window. For example, the sunshade can be closed when the vehicle speed exceeds 100 km / h, or when the wind speed exceeds 10 m / s.
[0059] For example, in scenario S2a above, the vehicle's sunshade is in a closed state. When both wind speed and vehicle speed information are within the threshold range, the vehicle's central control system detects the sunshade state change trigger signal and determines that the sunshade switching trend information is unfolded. At this time, the sunshade adjustment mode is determined to be unfolded mode. In scenario S2b above, the vehicle's sunshade is in an unfolded state. When either wind speed or vehicle speed information exceeds the threshold range, the vehicle's central control system detects the sunshade state change trigger signal and determines that the sunshade switching trend information is unfolded. At this time, the sunshade adjustment mode is determined to be closed mode. In scenario S2c above, the vehicle's sunshade is in a closed state. When either wind speed or vehicle speed information exceeds the threshold range, the vehicle's central control system detects the sunshade state change trigger signal and determines that the sunshade switching trend information is unfolded. At this time, the sunshade adjustment mode is determined to be closed mode.
[0060] In other words, if either the vehicle speed or wind speed value exceeds a threshold range, the sunshade adjustment mode is set to the retractable mode, and the sunshade cannot be deployed. When the sunshade cannot be deployed, a reminder window or voice prompt can be displayed on the vehicle's infotainment platform to alert the user.
[0061] Based on the above description, compared with the existing technology that can only control the sunshade when the car window is closed, the sunshade can also open or close when the car window is open, thus enabling more intelligent and automated control of the sunshade.
[0062] Of course, the above three scenarios are only examples to illustrate the judgment logic in specific scenarios when the sunshade switching trend information, sunshade status information, and vehicle information are in different states. For other undescribed states of the sunshade switching trend information, sunshade status information, and vehicle information, you can refer to the above example scenarios for judgment.
[0063] For example, if the sunshade switching trend information is "closed" and the sunshade status information is "closed", then there is no need to consider the current vehicle speed information and the wind speed information around the vehicle, and the sunshade is in the closed mode by default; if the sunshade switching trend information is "closed" and the sunshade status information is "open", then there is no need to consider the current vehicle speed information and the wind speed information around the vehicle, and the sunshade adjustment mode is determined to be the closed mode.
[0064] In the above embodiments, by combining the switching trend information of the sunshade, the status information of the sunshade, and the vehicle information to comprehensively determine whether the current sunshade is suitable for unfolding or closing, it is also possible to ensure that the vehicle sunshade is in a normal and safe use scenario, and to avoid the sunshade from being rolled up and deformed due to its switching action or factors such as vehicle speed and wind speed.
[0065] In some embodiments, before determining the sunshade switching trend information based on the detected sunshade state change trigger signal, the following steps are further included:
[0066] In response to the recognition commands fed back by the user on the vehicle-mounted interactive platform, the system monitors the changes in the state of the sunshade and triggers signals. The recognition commands include mosquito repellent recognition commands and sun protection recognition commands.
[0067] In the above embodiments, the vehicle-machine interaction platform refers to a mature central control screen used in vehicles, or a mobile device that can be linked and controlled with the vehicle, as long as it can realize the interaction function between the user and the vehicle. For example, when the user uses the central control screen in the vehicle, the central control screen adds relevant options for "mosquito repellency recognition" and "sunscreen recognition". When the user actively activates the "mosquito repellency recognition" or "sunscreen recognition" option, the system monitors the changes in the state of the sunshade related to mosquito repellency or sunscreen based on the user's selected option, triggering signals. Of course, the setting of the sunshade usage function options in this application is only for illustrative purposes, and the names can be changed.
[0068] In some embodiments, the sunshade state change trigger signal includes vehicle body greenery coverage information, vehicle body solar radiation information, and temperature and humidity information;
[0069] The process of determining the sunshade switching trend information based on the monitored sunshade status change trigger signal includes:
[0070] If at least one of the following information—the green vegetation coverage around the vehicle, the solar radiation of the vehicle, and the temperature and humidity—is greater than a set range, the sunshade switching trend information is extracted and the sunshade is expanded.
[0071] If the information on the greenery coverage around the vehicle, the vehicle's solar radiation, and the temperature and humidity are all within the set range, then the sunshade switching trend information is determined to be retracted.
[0072] In the above steps, the green coverage information of the vehicle body can be obtained through the environmental monitoring system installed on the vehicle, such as by setting up a camera on the vehicle body or querying the green coverage rate of the vehicle's current location through a big data platform; the solar radiation information of the vehicle body can be obtained through the solar radiation sensor installed on the vehicle, and the temperature and humidity information can be collected through the temperature and humidity sensor installed on the vehicle.
[0073] It should be noted that, depending on the judgment logic for different scenarios, the aforementioned information on the green vegetation coverage around the vehicle, the vehicle's solar radiation information, and the temperature and humidity information can be combined. For example, the information on the green vegetation coverage around the vehicle and the temperature and humidity information can be combined with the mosquito situation, or the information on the vehicle's solar radiation information and the temperature and humidity information can be combined to judge the sun protection situation, or the information on the green vegetation coverage around the vehicle and the vehicle's solar radiation information can be combined to judge the sun protection situation, etc.
[0074] For example, when a user enables the "mosquito prevention detection" option, the vehicle actively monitors the green vegetation coverage and temperature and humidity information around the vehicle. When the green vegetation coverage around the vehicle is greater than a set range and the temperature and humidity information is within a certain range (such as both temperature and humidity information being high), the vehicle determines that there may be mosquitoes in this area, and the determined sunshade switching trend information is to unfold.
[0075] Alternatively, when the user enables the "sun protection recognition" option, the vehicle actively acquires the vehicle's solar radiation information. If the vehicle's solar radiation information is greater than the set range, the vehicle determines that the sunlight is too strong and then determines the sunshade switching trend information to unfold.
[0076] In the above description, the setting ranges for the green vegetation coverage around the vehicle, the solar radiation of the vehicle, and the temperature and humidity information can be flexibly set according to the actual application scenario. For example, if the green vegetation coverage around the vehicle exceeds 35%, the temperature is higher than 35°, and the humidity is greater than 40%, it is determined that there may be mosquitoes at the current location. This will not be explained in detail here.
[0077] In some embodiments, the vehicle's infotainment platform includes "one-click camping" or "one-click ventilation" options, where both the windows and sunshades are in the deployed state. When a user selects either "one-click camping" or "one-click ventilation," the system can simultaneously monitor the sunshade status change trigger signal based on the user's enabled "insect repellency recognition" or "sun protection recognition" options. If the sunshade status change trigger signal indicates deployment, the system can determine the sunshade switching trend information. Based on this trend information, the sunshade status information, and vehicle information, the system determines the sunshade adjustment mode, thus reminding the user whether the sunshade needs to be deployed.
[0078] In some embodiments, the sunshade state change trigger signal includes target voice information;
[0079] The method of determining the sunshade switching trend information based on the monitored sunshade status change trigger signal also includes:
[0080] In response to the recognition of target voice information in the voice information in the passenger cabin, the sunshade switching trend information is determined to be deployed based on the target voice information.
[0081] In the above steps, the recognition of voice information in the passenger cabin can be obtained through AI (Artificial Intelligence). After the user activates the vehicle's "collect voice input and provide intelligent services" function, the multimedia system collects the voice signal in the vehicle in real time for local recognition (it cannot record, save, or upload it externally), and compares the recognized voice result with the target voice information. When there is the same or highly similar voice information, subsequent judgment logic is performed.
[0082] For example, the target voice information may include keywords such as "sunshine," "too hot," "mosquitoes," and "insects." That is, when the user selects "mosquito and insect detection" and the voices of people in the carriage contain words such as "mosquitoes" and "insects," the sunshade switching trend information can be further determined to be expanded; when the user selects "sun protection detection" and the voices of people in the carriage contain words such as "too hot" and "sunshine," the sunshade switching trend information can be further determined to be expanded.
[0083] In the above embodiments, the description focuses on driving the sunshade to unfold or retract. In some embodiments, the driving mechanism can also simultaneously drive the sunshade and the window to unfold or retract, thereby achieving a more significant sun protection or insect repellent effect. When the sunshade and the window are driven simultaneously, the window's raising and lowering action can also refer to the sunshade usage strategy described in this application.
[0084] In addition, the aforementioned process for determining the trend information of sunshade switching can be used in combination. That is, if the user selects "mosquito prevention recognition" and "sun protection recognition", the voice information in the passenger cabin can be monitored at the same time, as well as the information on the green vegetation coverage around the vehicle, the vehicle's solar radiation information, and temperature and humidity information can be collected. The combination of the two can be used to determine whether the sunshade needs to be opened.
[0085] In some embodiments, after the user activates the vehicle's "collect voice input and provide intelligent services" function, the vehicle's central control unit can directly recognize the user's voice commands to drive the drive mechanism to open or close the sunshade. For example, the user can issue the voice commands "open the sunshade" or "close the sunshade". "Open the sunshade" or "close the sunshade" are the target voice information, and the vehicle's central control unit controls the sunshade to open or close accordingly based on the recognized target voice information.
[0086] In some embodiments, users can control whether to perform subsequent sunshade adjustments through the vehicle's infotainment platform. For example... Figure 2 As shown, in the usage strategy of this application, determining the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information further includes:
[0087] S400, based on the sunshade switching trend information, sunshade status information and vehicle information, determine the sunshade pre-adjustment mode.
[0088] S500 sends human-machine interaction information, including the sunshade pre-adjustment mode, to the vehicle-machine interaction platform for the user to select.
[0089] The S600 determines the sunshade adjustment mode based on the user's selection.
[0090] In the above embodiments, the sunshade pre-adjustment mode refers to the mode of subsequent actions of the sunshade obtained after performing the relevant logical judgments in the aforementioned embodiments. For example, when it is determined that there may be mosquitoes at the current location of the vehicle, the human-computer interaction information is the sunshade switching trend information determined in the mosquito prevention identification scenario. A pop-up window or voice broadcast on the vehicle-machine interaction platform says "Mosquitoes may be detected around, do you need to pull up the sunshade?", accompanied by options including "Pull up" and "Ignore". A countdown is displayed at the "Ignore" button. After the countdown ends, the option to ignore is automatically selected. At the same time, the multimedia provides voice prompts for the pop-up information. When the user clicks "Pull up" or replies "Yes" or "Pull up (sunshade)", the current sunshade adjustment mode is determined to be unfolded, and an unfolding adjustment signal is sent to the drive mechanism to drive the sunshade to unfold.
[0091] In the above explanation, the user's active clicking of the "Raise" and "Ignore" buttons correspond to different feedback signals. When the user does not perform any operation, the default is "Ignore", and the feedback signal is that the sunshade does not need to be raised.
[0092] For example, when the vehicle obtains current speed information and wind speed information around the vehicle within a threshold range, and the user activates the mosquito repellent detection option, the vehicle obtains information on the green vegetation coverage around the vehicle and temperature and humidity information. If either the green vegetation coverage information or the temperature and humidity information exceeds a set range, the extracted sunshade switching trend information is "unfolded". At this time, the vehicle obtains the sunshade status information. If the sunshade is in the unfolded state, no operation is required. If the sunshade is in the closed state, the user is reminded whether to pull up the sunshade. If the user selects to pull up, an unfolding adjustment signal is sent to the drive mechanism to adjust the unfolding of the sunshade.
[0093] It should be noted that the method in this embodiment can be executed by a single device, such as a computer or server. The method can also be applied in a distributed scenario, where multiple devices cooperate to complete the task. In such a distributed scenario, one of these devices may execute only one or more steps of the method in this embodiment, and the multiple devices will interact with each other to complete the method described.
[0094] It should be noted that the above description describes some embodiments of this application. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recorded in the claims can be performed in a different order than that shown in the above embodiments and still achieve the desired result. Furthermore, the processes depicted in the drawings do not necessarily require a specific or sequential order to achieve the desired result. In some embodiments, multitasking and parallel processing are also possible or may be advantageous.
[0095] Based on the same inventive concept, corresponding to any of the above embodiments, such as Figure 3 As shown, this application also provides a control device for a sunshade curtain, comprising:
[0096] The sensing module 1 is configured to determine the sunshade switching trend information based on the detected sunshade status change trigger signal, and to obtain sunshade status information and vehicle information.
[0097] Control module 2 is configured to determine the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information.
[0098] The sending module 3 is configured to send an adjustment signal corresponding to the sunshade adjustment mode to the drive mechanism, so that the drive mechanism controls the sunshade to open or close.
[0099] For ease of description, the above devices are described in terms of function, divided into various modules. Of course, in implementing this application, the functions of each module can be implemented in one or more software and / or hardware.
[0100] The apparatus of the above embodiments is used to implement the usage strategy of the corresponding sunshade curtain in any of the foregoing embodiments, and has the beneficial effects of the corresponding method embodiments, which will not be repeated here.
[0101] Based on the same inventive concept, corresponding to the methods of any of the above embodiments, this application also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the usage strategy described in any of the above embodiments.
[0102] Figure 4 This embodiment illustrates a more specific hardware structure of an electronic device, which may include a processor 1010, a memory 1020, an input / output interface 1030, a communication interface 1040, and a bus 1050. The processor 1010, memory 1020, input / output interface 1030, and communication interface 1040 are interconnected internally via the bus 1050.
[0103] The processor 1010 can be implemented using a general-purpose CPU (Central Processing Unit), microprocessor, application-specific integrated circuit (ASIC), or one or more integrated circuits, and is used to execute relevant programs to implement the technical solutions provided in the embodiments of this specification.
[0104] The memory 1020 can be implemented in the form of ROM (Read Only Memory), RAM (Random Access Memory), static storage device, dynamic storage device, etc. The memory 1020 can store the operating system and other applications. When the technical solutions provided in the embodiments of this specification are implemented by software or firmware, the relevant program code is stored in the memory 1020 and is called and executed by the processor 1010.
[0105] The input / output interface 1030 is used to connect input / output modules to enable information input and output. Input / output modules can be configured as components within the device. Figure 4 (Not shown in the image) It can also be connected to external devices to provide corresponding functions. Input devices may include keyboards, mice, touch screens, microphones, various sensors, etc., while output devices may include displays, speakers, vibrators, indicator lights, etc.
[0106] Communication interface 1040 is used to connect to the communication module ( Figure 4 (Not shown in the image) to enable communication and interaction between this device and other devices. The communication module can communicate via wired means (such as USB, Ethernet cable, etc.) or wireless means (such as mobile network, WIFI, Bluetooth, etc.).
[0107] Bus 1050 includes a pathway for transmitting information between various components of the device, such as processor 1010, memory 1020, input / output interface 1030, and communication interface 1040.
[0108] It should be noted that although the above-described device only shows the processor 1010, memory 1020, input / output interface 1030, communication interface 1040, and bus 1050, in specific implementations, the device may also include other components necessary for normal operation. Furthermore, those skilled in the art will understand that the above-described device may only include the components necessary for implementing the embodiments of this specification, and not necessarily all the components shown in the figures.
[0109] The electronic devices described above are used to implement the corresponding usage strategies in any of the foregoing embodiments and have the beneficial effects of the corresponding method embodiments, which will not be repeated here.
[0110] Based on the same inventive concept, corresponding to the methods of any of the above embodiments, this application also provides a non-transitory computer-readable storage medium that stores computer instructions for causing the computer to execute the usage strategy as described in any of the above embodiments.
[0111] The computer-readable medium of this embodiment includes permanent and non-permanent, removable and non-removable media, and information storage can be implemented by any method or technology. Information can be computer-readable instructions, data structures, program modules, or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, CD-ROM, digital versatile optical disc (DVD) or other optical storage, magnetic tape, magnetic magnetic disk storage or other magnetic storage devices, or any other non-transfer medium that can be used to store information accessible by a computing device.
[0112] The computer instructions stored in the storage medium of the above embodiments are used to cause the computer to execute the usage strategy as described in any of the above embodiments, and have the beneficial effects of the corresponding method embodiments, which will not be repeated here.
[0113] Based on the same inventive concept, this application also provides a vehicle, including the control device or electronic device or storage medium as described above.
[0114] Those skilled in the art should understand that the discussion of any of the above embodiments is merely exemplary and is not intended to imply that the scope of this application (including the claims) is limited to these examples; within the framework of this application, the technical features of the above embodiments or different embodiments can also be combined, the steps can be implemented in any order, and there are many other variations of different aspects of the embodiments of this application as described above, which are not provided in the details for the sake of brevity.
[0115] Additionally, to simplify the description and discussion, and to avoid obscuring the embodiments of this application, the well-known power / ground connections to integrated circuit (IC) chips and other components may or may not be shown in the provided drawings. Furthermore, the apparatus may be shown in block diagram form to avoid obscuring the embodiments of this application, and this also takes into account the fact that the details of the implementation of these block diagram apparatuses are highly dependent on the platform on which the embodiments of this application will be implemented (i.e., these details should be fully understood by those skilled in the art). While specific details (e.g., circuits) have been set forth to describe exemplary embodiments of this application, it will be apparent to those skilled in the art that the embodiments of this application can be implemented without these specific details or with variations thereof. Therefore, these descriptions should be considered illustrative rather than restrictive.
[0116] Although this application has been described in conjunction with specific embodiments thereof, many substitutions, modifications, and variations of these embodiments will be apparent to those skilled in the art from the foregoing description. For example, other memory architectures (e.g., dynamic RAM (DRAM)) may be used with the embodiments discussed.
[0117] The embodiments of this application are intended to cover all such substitutions, modifications, and variations that fall within the broad scope of the appended claims. Therefore, any omissions, modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the embodiments of this application should be included within the protection scope of this application.
Claims
1. A use strategy for a sunshade, characterized in that, The sunshade is applied to a vehicle, the vehicle including a drive mechanism for controlling the opening and closing of the sunshade, the strategy including: Based on the detected sunshade status change trigger signal, determine the sunshade switching trend information, and obtain sunshade status information and vehicle information. The sunshade adjustment mode is determined based on the sunshade switching trend information, sunshade status information, and vehicle information. Send an adjustment signal corresponding to the sunshade adjustment mode to the drive mechanism so that the drive mechanism controls the sunshade to open or close. The sunshade status change trigger signal includes vehicle body greenery coverage information, vehicle body solar radiation information, and temperature and humidity information; the determination of sunshade switching trend information based on the monitored sunshade status change trigger signal includes: If at least one of the following information—the green vegetation coverage around the vehicle body, the solar radiation of the vehicle body, and the temperature and humidity—is greater than a set range, then the sunshade switching trend information is determined to be unfolded. If the information on the green vegetation coverage around the vehicle, the vehicle's solar radiation, and the temperature and humidity are all within the set range, then the sunshade switching trend information is determined to be folding. If at least one of the following information—surrounding greenery coverage, vehicle solar radiation, and temperature / humidity—is greater than a set range, then the sunshade switching trend information is determined to be unfolded, including: In response to the command to activate mosquito prevention detection, and if the green vegetation coverage around the vehicle exceeds the set range, and the temperature and humidity exceed the set range, then a mosquito prevention requirement is confirmed, and the sunshade switching trend information is set to unfold.
2. The use strategy of the sunshade curtain according to claim 1, characterized in that, The vehicle information includes the vehicle's speed and the wind speed around the vehicle. The step of determining the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information includes: If the sunshade switching trend information is "unfolded", the sunshade status information is "folded", and the vehicle speed information and / or the wind speed information are within the threshold range, then the sunshade adjustment mode is determined to be the unfolded mode. If the sunshade switching trend information is unfolded, the sunshade status information is unfolded, and the vehicle speed information and / or the wind speed information is greater than the threshold range, then the sunshade adjustment mode is determined to be the folding mode. If the sunshade switching trend information is "expanded", the sunshade status information is "closed", and the vehicle speed information and / or the wind speed information are greater than the threshold range, then the sunshade adjustment mode is determined to be the "closed" mode.
3. The use strategy of the sunshade curtain according to claim 1, characterized in that, The trigger signal for the change in the state of the sunshade includes target voice information; The method of determining the sunshade switching trend information based on the monitored sunshade status change trigger signal also includes: In response to the identification of target voice information in the voice information in the passenger cabin, the sunshade switching trend information is determined to be unfolded based on the target voice information.
4. The use strategy of the sunshade curtain according to claim 1, characterized in that, The step of determining the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information includes: Based on the sunshade switching trend information, sunshade status information, and vehicle information, determine the sunshade pre-adjustment mode; The human-machine interaction information containing the sunshade pre-adjustment mode is sent to the vehicle-machine interaction platform for the user to select. The adjustment mode of the sunshade is determined based on the user's selection.
5. The use of a shade according to any one of claims 1 to 4, characterized in that, The process of determining the sunshade switching trend information based on the monitored sunshade status change trigger signal includes: In response to the recognition commands fed back by the user on the vehicle-mounted interactive platform, the system monitors the trigger signals of changes in the sunshade status, wherein the recognition commands include mosquito repellent recognition commands and sun protection recognition commands.
6. A control device for a sunshade, characterized by include: The sensing module is configured to determine the sunshade switching trend information based on the detected sunshade status change trigger signal, and to obtain sunshade status information and vehicle information. The trigger signals for changes in the sunshade status include information on the vehicle's green plant coverage, vehicle's solar radiation, and temperature and humidity. The sensing module is also configured to determine the sunshade switching trend information as unfolding if at least one of the following information is greater than a set range: information on the green vegetation coverage around the vehicle body, information on the vehicle body's solar radiation, and information on temperature and humidity. If the information on the green vegetation coverage around the vehicle, the vehicle's solar radiation, and the temperature and humidity are all within the set range, then the sunshade switching trend information is determined to be folding. In response to the command to activate mosquito prevention recognition, and if the green vegetation coverage around the vehicle is greater than the set range, and the temperature and humidity are greater than the set range, then it is determined that there is a need for mosquito prevention, and the sunshade switching trend information is unfolded. The control module is configured to determine the sunshade adjustment mode based on the sunshade switching trend information, sunshade status information, and vehicle information. The sending module is configured to send an adjustment signal corresponding to the sunshade adjustment mode to the drive mechanism, so that the drive mechanism controls the sunshade to open or close.
7. An electronic device comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the usage strategy as described in any one of claims 1 to 5.
8. A computer-readable storage medium storing computer instructions, wherein, The computer instructions are used to cause the computer to execute the usage strategy described in any one of claims 1 to 5.
9. A vehicle characterized by comprising: It includes the control device as described in claim 6, the electronic device as described in claim 7, or the storage medium as described in claim 8.
Citation Information
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