Haptic feedback setting method for in-vehicle terminal, electronic device and storage medium
By establishing a network connection between the in-vehicle terminal and the mobile terminal, and acquiring and matching haptic feedback parameters, the problem of cumbersome settings on the in-vehicle terminal is solved, thereby improving the user experience and driving safety.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-08
- Publication Date
- 2026-03-19
AI Technical Summary
Setting haptic feedback parameters on the in-vehicle terminal is cumbersome and fails to meet the personalized needs of different users. In addition, the limited time spent in the car leads to a poor user experience.
By establishing a network connection between the vehicle terminal and the mobile terminal, the haptic feedback parameters of the mobile terminal are obtained, and the vehicle terminal is configured according to these parameters to achieve parameter matching.
It simplifies the steps for users to set up haptic feedback on the in-vehicle terminal, improves the consistency of user experience and driving safety, and provides better haptic feedback through blind operation.
Smart Images

Figure CN2025119677_19032026_PF_FP_ABST
Abstract
Description
Method for setting haptic feedback of vehicle terminal, electronic device and storage medium TECHNICAL FIELD
[0001] The present application relates to the technical field of haptic feedback, and particularly relates to a method for setting haptic feedback of a vehicle terminal, an electronic device, a storage medium and a program product. BACKGROUND
[0002] Haptic feedback is to use a motor, a piezoelectric ceramic or the like to generate a slight vibration or force change, so as to transmit vibration feedback to a user. Different vibration feedback is provided when the user controls different display controls.
[0003] With the increasing number and size of vehicle display devices, vehicle haptic feedback can enhance the touch operation experience of the user operating the vehicle display device, and can support blind operation of the user, thereby improving the safety of driving. Since different users have different needs for haptic feedback, different haptic feedback parameters may need to be set, but since the user has limited time on the vehicle, it is cumbersome to set vehicle haptic feedback parameters through the vehicle machine. SUMMARY
[0004] Therefore, the present disclosure provides a method for setting haptic feedback of a vehicle terminal, an electronic device, a storage medium and a program product.
[0005] One aspect of the present disclosure provides a method for setting haptic feedback of a vehicle terminal, the method comprising: establishing a network connection between the vehicle terminal and a mobile terminal; obtaining first haptic feedback parameters of the mobile terminal; and setting second haptic feedback parameters of the vehicle terminal according to the first haptic feedback parameters of the mobile terminal, so that the haptic feedback parameters of the vehicle terminal and the mobile terminal are matched.
[0006] Another aspect of the present disclosure provides a device for setting haptic feedback of a vehicle terminal, the device comprising: a connection module configured to establish a network connection between the vehicle terminal and a mobile terminal; an obtaining module configured to obtain first haptic feedback parameters of the mobile terminal; and a setting module configured to set second haptic feedback parameters of the vehicle terminal according to the first haptic feedback parameters of the mobile terminal, so that the haptic feedback parameters of the vehicle terminal and the mobile terminal are matched.
[0007] Another aspect of the present disclosure provides an electronic device, comprising: one or more processors; a memory configured to store one or more programs, wherein when the one or more programs are executed by the one or more processors, the one or more processors implement the method as described above.
[0008] Another aspect of the present disclosure provides a computer-storable medium storing computer-executable instructions, which when executed, implement the method as described above.
[0009] Another aspect of the present disclosure provides a computer program product comprising computer executable instructions for implementing the method as described above when executed.
[0010] It should be understood that the description in this section is not intended to identify key or essential features of embodiments of the present disclosure, nor is it intended to limit the scope of the disclosure. Other aspects of the present disclosure will be readily apparent to those skilled in the art from the following description. BRIEF DESCRIPTION OF DRAWINGS
[0011] The above and other objects, features and advantages of the present disclosure will become more apparent from the following description when taken in conjunction with the accompanying drawings, in which:
[0012] FIG. 1 schematically shows an application scenario diagram of a haptic feedback setting method, device, medium and program product of a vehicle terminal according to an embodiment of the present disclosure;
[0013] FIG. 2 schematically shows a flowchart of a haptic feedback setting method of a vehicle terminal according to an embodiment of the present disclosure;
[0014] FIG. 3 schematically shows a flowchart of a haptic feedback setting method of a vehicle terminal according to a current use haptic feedback level according to another embodiment of the present disclosure;
[0015] FIG. 4 schematically shows a flowchart of a haptic feedback setting method of a vehicle terminal according to a current use haptic feedback level according to yet another embodiment of the present disclosure;
[0016] FIG. 5 schematically shows a schematic diagram of a haptic feedback setting method of a vehicle terminal according to a current use haptic feedback level according to yet another embodiment of the present disclosure;
[0017] FIG. 6 schematically shows a flowchart of a haptic feedback setting method of a vehicle terminal according to a haptic feedback level use duration according to an embodiment of the present disclosure;
[0018] FIG. 7 schematically shows a flowchart of a haptic feedback setting method of a vehicle terminal according to a haptic feedback level use duration according to another embodiment of the present disclosure;
[0019] FIG. 8 schematically shows a schematic diagram of a haptic feedback setting method of a vehicle terminal according to a haptic feedback level use duration according to an embodiment of the present disclosure;
[0020] FIG. 9 schematically shows another schematic diagram of a haptic feedback setting method of a vehicle terminal according to a haptic feedback level use duration according to an embodiment of the present disclosure;
[0021] FIG. 10 schematically shows a block diagram of a haptic feedback setting device of a vehicle terminal according to an embodiment of the present disclosure;
[0022] FIG. 11 schematically illustrates a block diagram of an electronic device suitable for implementing the above-described methods according to embodiments of the present disclosure. DETAILED DESCRIPTION
[0023] Hereinafter, embodiments of the present disclosure will be described with reference to the accompanying drawings. It should be understood, however, that the description which follows is merely exemplary and is not intended to limit the scope of the present disclosure. In the following detailed description of embodiments of the present disclosure, numerous specific details are set forth in order to provide a thorough understanding of the embodiments of the present disclosure. However, it would be apparent to one skilled in the art that the embodiments of the present disclosure can be practiced without these specific details. In other instances, well-known structures and functions have not been described in detail in order to avoid obscuring aspects of the present disclosure.
[0024] The terms used herein are merely used to describe specific embodiments and are not intended to limit the present disclosure. The terms "include", "comprise", and the like used herein indicate the presence of the described features, steps, operations, and / or components, but do not exclude the presence or addition of one or more other features, steps, operations, or components.
[0025] All terms used herein, including technical and scientific terms, have the same meanings as commonly understood by one of ordinary skill in the art unless otherwise defined. It should be noted that the terms used herein should be interpreted as having meanings consistent with the context of the present description, and should not be interpreted in an idealized or overly formal manner.
[0026] In the case of using expressions similar to "at least one of A, B, and C, etc.", it should generally be interpreted to include at least one of A, B, and C, etc. (e.g., "a system having at least one of A, B, and C" should include but not be limited to a system having A alone, a system having B alone, a system having C alone, a system having both A and B, a system having both A and C, a system having both B and C, and / or a system having A, B, and C, etc.).
[0027] Vehicle-mounted tactile feedback is an important part of the future development of intelligent vehicles. Through tactile feedback, the driving experience can be enhanced, and the safety of driving can be improved. Since different users have different needs for tactile feedback, different tactile feedback parameters may need to be set, but since the time of the user on the car is limited, it is relatively cumbersome to set the vehicle-mounted tactile feedback through the car machine.
[0028] Mobile terminal haptic feedback has been widely used. With the rise of human-vehicle-home ecology, the interconnection and intercommunication of mobile terminals, vehicles and home will reach a higher level. The mobile terminal, vehicle terminal and home terminal of the same user can all support haptic feedback function. In order to ensure the consistency of user experience, the haptic feedback parameters of different terminals should be matched. The vehicle can simplify the steps of setting haptic feedback parameters of the user on the vehicle terminal by matching the haptic feedback parameters of the mobile terminal, home terminal and other terminals, and improve the user's riding experience.
[0029] FIG. 1 schematically shows an application scenario diagram of a haptic feedback setting method, device, medium and program product of a vehicle terminal according to an embodiment of the present disclosure. It should be noted that FIG. 1 only shows an example of an application scenario to which the embodiments of the present disclosure can be applied, to help those skilled in the art understand the technical content of the present disclosure, but does not mean that the embodiments of the present disclosure cannot be used in other devices, systems, environments or scenarios.
[0030] As shown in FIG. 1, the application scenario 100 according to the embodiment can include a first mobile terminal 101, a second mobile terminal 102, a third mobile terminal 103, a network 104, a vehicle terminal 105, a first home terminal 106 and a second home terminal 107. The network 104 is a medium for providing a communication link between the first mobile terminal 101, the second mobile terminal 102, the third mobile terminal 103 and the vehicle terminal 105. The network 104 can include various connection types, such as wired connection and / or wireless communication, etc. The wireless communication includes short-range wireless protocols such as WI-FI, BLUETOOTH, star flash, etc., and long-range wireless communication protocols such as 3G, 4G, 5G, 6G, Lora, etc.
[0031] The first mobile terminal 101, the second mobile terminal 102 and the third mobile terminal 103 can be various electronic devices with haptic feedback, including but not limited to smart watches, smart rings and other wearable devices, mobile phones, tablets, portable computers and other mobile electronic devices.
[0032] The vehicle terminal 105 can be a vehicle-mounted device with haptic feedback function, including but not limited to a vehicle-mounted display screen, a vehicle-mounted tablet, a vehicle-mounted steering wheel, etc.
[0033] The first home terminal 106 and the second home terminal 107 can be home electronic devices with haptic feedback function, including but not limited to refrigerators, microwave ovens, water heaters, range hoods, washing machines and other home devices.
[0034] It should be understood that the number of mobile terminals, networks and vehicle terminals in FIG. 1 is only schematic. According to actual needs, there can be any number of mobile terminals, networks and vehicle terminals.
[0035] FIG. 2 schematically shows a flowchart of a haptic feedback setting method of a vehicle terminal according to an embodiment of the present disclosure. As shown in FIG. 2, the method comprises:
[0036] Step S210: establishing a network connection between the vehicle terminal and the mobile terminal;
[0037] The vehicle terminal and the mobile terminal can be connected through a complete protocol stack such as Carplay, Hicar, Matter, etc., or can establish a bottom-layer communication connection through Bluetooth, WiFi, and then build a service channel to realize data interaction on the basis of the bottom-layer communication connection.
[0038] Step S220: obtaining a first haptic feedback parameter of the mobile terminal;
[0039] Since the user interacts with the mobile terminal for a long time, the user can conveniently set the haptic feedback parameter of the mobile terminal, and the mobile terminal can also record the user's haptic feedback setting preference. Therefore, the first haptic feedback parameter of the mobile terminal can better feedback the user's haptic feedback setting preference.
[0040] The first haptic feedback parameter of the mobile terminal comprises at least one haptic feedback parameter, and the second haptic feedback parameter of the vehicle terminal comprises at least one haptic feedback parameter. The number and content of the first haptic feedback parameter and the second haptic feedback parameter can be the same, or alternatively, the number and / or content of the first haptic feedback parameter and the second haptic feedback parameter are different.
[0041] The first haptic feedback parameter of the mobile terminal can comprise a vibration intensity (a haptic feedback parameter type), a vibration intensity level number (a haptic feedback level number corresponding to the haptic feedback parameter type), for example, the vibration intensity comprises light and strong, and a currently used vibration intensity (a haptic feedback level currently used by the haptic feedback parameter type), for example, light.
[0042] The first haptic feedback parameter can further comprise a vibration duration (a haptic feedback parameter type), a vibration duration level number (a haptic feedback level number corresponding to the haptic feedback parameter type), for example, the vibration duration comprises short and long, and a currently used vibration duration (a haptic feedback level currently used by the haptic feedback parameter type), for example, short.
[0043] The first haptic feedback parameter can further comprise a vibration waveform (a haptic feedback parameter type), a vibration waveform number (a haptic feedback level number corresponding to the haptic feedback parameter type), for example, the vibration waveform comprises single-peak and double-peak, and a currently used vibration waveform (a haptic feedback level currently used by the haptic feedback parameter type), for example, single-peak.
[0044] Step S230: setting the second haptic feedback parameter of the vehicle-mounted terminal according to the first haptic feedback parameter of the mobile terminal, so that the haptic feedback parameters of the vehicle-mounted terminal and the mobile terminal are matched.
[0045] Since the user has limited interaction time with the vehicle-mounted terminal, the user is not very convenient to set the haptic feedback parameter of the vehicle-mounted terminal. By matching the haptic feedback parameter of the vehicle-mounted terminal with the haptic feedback parameter of the mobile terminal, the user's haptic feedback experience in the vehicle-mounted terminal is improved.
[0046] The mobile terminal is for a large user group, so the haptic feedback parameter of the mobile terminal is set for the large user group, which reflects the preference range of the haptic feedback of the large user group. Since there are differences between different users, the user may select different haptic feedback parameters. The vehicle-mounted terminal is also for a large user group, so the haptic feedback parameter of the vehicle-mounted terminal is set for the large user group, which reflects the preference range of the haptic feedback of the large user group. Since there are differences between different users, the user may select different haptic feedback parameters of the vehicle-mounted terminal.
[0047] The selection of the haptic feedback parameter of the mobile terminal by the user represents the preference of the user's haptic feedback setting. The vehicle-mounted terminal sets the vehicle-mounted haptic feedback parameter according to the preference of the haptic feedback setting of the mobile terminal, which can better match the user's haptic feedback preference, reduce the user's setting time of the vehicle-mounted haptic feedback, and improve the user's haptic feedback experience in the vehicle-mounted environment. In addition, the haptic feedback can provide feedback for the blind operation of the user when driving, and better haptic feedback setting can improve the safety of the user's driving.
[0048] According to an embodiment of the present disclosure, the haptic feedback parameter includes a system haptic feedback parameter and an application haptic feedback parameter, the obtaining the first haptic feedback parameter of the mobile terminal includes: obtaining at least one of the system haptic feedback parameter and the application haptic feedback parameter of the mobile terminal; and the setting the second haptic feedback parameter of the vehicle-mounted terminal according to the first haptic feedback parameter of the mobile terminal includes: setting the system haptic feedback parameter and / or the application haptic feedback parameter of the vehicle-mounted terminal according to the system haptic feedback parameter and / or the application haptic feedback parameter of the mobile terminal.
[0049] According to an embodiment of the present disclosure, the vehicle-mounted terminal includes a vehicle-mounted display terminal, and the vehicle-mounted display terminal integrates a haptic feedback function; and the establishing the network connection with the mobile terminal includes: the vehicle-mounted display terminal receiving a connection request of the mobile terminal, authenticating the connection request, and establishing the network connection with the mobile terminal after the authentication is passed.
[0050] According to an embodiment of the present disclosure, the haptic feedback parameter type includes at least one of vibration intensity, vibration duration, and vibration waveform.
[0051] Further, the method for setting the haptic feedback of the vehicle terminal comprises: establishing a network connection between the vehicle terminal and the home terminal; obtaining the first haptic feedback parameter of the home terminal; and setting the second haptic feedback parameter of the vehicle terminal according to the first haptic feedback parameter of the home terminal, so that the haptic feedback parameters of the vehicle terminal and the home terminal are matched. The first haptic feedback parameter comprises a haptic feedback parameter type of the home terminal, a number m of haptic feedback levels corresponding to the haptic feedback parameter type of the home terminal, wherein m is an integer and m>1, and a first haptic feedback level q corresponding to the haptic feedback parameter type of the home terminal, wherein q is an integer and q≥1, q≤m, and the first haptic feedback level q is the currently used haptic feedback level of the haptic feedback parameter type of the home terminal.
[0052] The first haptic feedback parameter of the home terminal comprises a haptic feedback parameter type of the home terminal, a number m of haptic feedback levels corresponding to the haptic feedback parameter type of the home terminal, and a first haptic feedback level q corresponding to the haptic feedback parameter type of the home terminal. The number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal is obtained, wherein n is an integer and n>1; the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set according to the haptic feedback parameter type of the home terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the home terminal, the first haptic feedback level q corresponding to the haptic feedback parameter type of the home terminal, and the number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal. In the case that m is equal to n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set as the first haptic feedback level q; in the case that m is greater than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set as a second haptic feedback level p, and the second haptic feedback level p is less than or equal to the first haptic feedback level q; in the case that m is less than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set as a third haptic feedback level o, and the third haptic feedback level o is greater than or equal to the first haptic feedback level q. In the case that m is greater than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set as the second haptic feedback level p, and the second haptic feedback level p is equal to the value obtained by rounding off q*n / m; or in the case that m is less than n, the currently used haptic feedback level of the vehicle terminal is set as the third haptic feedback level o, and the third haptic feedback level o is equal to the value obtained by rounding off q*n / m. The rounding off method of n*q / m includes zero rounding off (directly discarding the decimal part), floor rounding off (rounding off to the negative infinity), right rounding off (rounding off to the positive infinity), and rounding off (deciding whether to carry over according to the decimal part).
[0053] FIG. 3 schematically shows a flow chart of a method for setting the haptic feedback of a vehicle terminal according to the haptic feedback level of a mobile terminal according to an embodiment of the present disclosure. As shown in FIG. 3, the method comprises:
[0054] Step S310: establishing a network connection between the vehicle terminal and the mobile terminal;
[0055] Step S320: obtaining the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, wherein m is an integer and m>1, and obtaining the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal, wherein q is an integer and q≥1, q≤m, and the first haptic feedback level q is the currently used haptic feedback level of the haptic feedback parameter type of the mobile terminal;
[0056] Step S330: setting the number of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal and / or the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal.
[0057] According to an embodiment of the present disclosure, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal. Since the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is usually settable, it is suitable for most vehicle terminals.
[0058] According to an embodiment of the present disclosure, the number of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal and the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal are set according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal. The number of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal is set to m; and the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal is set to q. Setting the number of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal requires that the vehicle terminal can dynamically adjust the haptic feedback level.
[0059] FIG. 4 schematically shows a flow chart of a method for setting the haptic feedback of a vehicle terminal according to the haptic feedback level of a mobile terminal according to another embodiment of the present disclosure. As shown in FIG. 4, the method comprises:
[0060] Step S410: establishing a network connection between the vehicle-mounted terminal and the mobile terminal;
[0061] Step S420: obtaining the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and obtaining the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal;
[0062] Step S430: obtaining the number n of haptic feedback levels available for the haptic feedback parameter type corresponding to the vehicle-mounted terminal;
[0063] Step S440: setting the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal, and the number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle-mounted terminal.
[0064] According to embodiments of the present disclosure, in the case where m is equal to n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal is set to the first haptic feedback level q; in the case where m is greater than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal is set to the second haptic feedback level p, which is less than or equal to the first haptic feedback level q; in the case where m is less than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal is set to the third haptic feedback level o, which is greater than or equal to the first haptic feedback level q.
[0065] According to embodiments of the present disclosure, in the case where m is greater than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal is set to the second haptic feedback level p, which is equal to the value obtained by rounding q*n / m; in the case where m is less than n, the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal is set to the third haptic feedback level o, which is equal to the value obtained by rounding q*n / m.
[0066] The rounding method of n*q / m includes zero rounding (directly discarding the decimal part), floor rounding (rounding to negative infinity), right rounding (rounding to positive infinity), rounding to the nearest integer (deciding whether to carry over according to the decimal part), and the like.
[0067] FIG. 5 schematically shows a schematic diagram of a method for setting haptic feedback of a vehicle-mounted terminal according to a currently used haptic feedback level according to yet another embodiment of the present disclosure.
[0068] As shown in FIG. 5, the mobile terminal and the vehicle-mounted terminal establish a connection 501; the vehicle-mounted terminal sends a mobile device haptic feedback parameter acquisition request 502 to the mobile terminal, the acquisition request including a haptic feedback parameter type of the mobile terminal, a number m of haptic feedback levels corresponding to the haptic feedback parameter type, and a currently used haptic feedback level q corresponding to the haptic feedback parameter type; the mobile terminal acquires the haptic feedback parameter of the mobile terminal according to the acquisition request 502 503; the mobile device sends a mobile device haptic feedback parameter acquisition response 504 to the vehicle-mounted terminal, the acquisition response including the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type, and the currently used haptic feedback level q corresponding to the haptic feedback parameter type; the vehicle-mounted terminal acquires the number n of haptic feedback levels of the haptic feedback parameter corresponding to the vehicle-mounted terminal 505; the vehicle-mounted terminal determines whether m and n are equal 506; if m is equal to n, the currently used haptic feedback level of the haptic feedback parameter corresponding to the vehicle-mounted terminal is set to q; if m is not equal to n, the currently used haptic feedback level of the haptic feedback parameter corresponding to the vehicle-mounted terminal is set to a value obtained by rounding off n*q / m.
[0069] The rounding off method of n*q / m includes zero rounding off (directly discarding the decimal part), floor rounding off (rounding off to the negative infinity direction), right rounding off (rounding off to the positive infinity direction), rounding off by fours and fives (deciding whether to carry over according to the decimal part), and the like.
[0070] FIG. 6 schematically shows a flow chart of a method for setting the haptic feedback of a vehicle-mounted terminal according to the use time length of different haptic feedback levels of a mobile terminal according to an embodiment of the present disclosure. As shown in FIG. 6, the method includes:
[0071] Step S610: establishing a network connection between the vehicle-mounted terminal and the mobile terminal;
[0072] Step S620: acquiring a haptic feedback parameter type of the mobile terminal, a number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and use time lengths corresponding to different haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal;
[0073] Step S630: setting a currently used haptic feedback level of a haptic feedback parameter type corresponding to the vehicle-mounted terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the use time lengths corresponding to different haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal.
[0074] FIG. 7 schematically shows a flow chart of a method for setting the haptic feedback of a vehicle-mounted terminal according to the use time length of different haptic feedback levels of a mobile terminal according to another embodiment of the present disclosure. As shown in FIG. 7, the method includes:
[0075] Step S710: establishing network connection between the vehicle-mounted terminal and the mobile terminal;
[0076] Step S720: obtaining the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the use time length corresponding to different haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal;
[0077] Step S730: obtaining the number n of haptic feedback levels available for the vehicle-mounted terminal;
[0078] Step S740: setting the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, the use time length corresponding to different haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle-mounted terminal.
[0079] According to an embodiment of the present disclosure, the method further comprises: determining the n haptic feedback levels with longer use time length corresponding to the haptic feedback parameter type of the mobile terminal according to the use time length corresponding to different haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal;
[0080] According to an embodiment of the present disclosure, the method further comprises: establishing the corresponding relationship between the n haptic feedback levels with longer use time length corresponding to the haptic feedback parameter type of the mobile terminal and the n haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle-mounted terminal according to the haptic feedback level relationship;
[0081] According to an embodiment of the present disclosure, the method further comprises: determining the haptic feedback level of the haptic feedback parameter type corresponding to the vehicle-mounted terminal according to the corresponding relationship and the haptic feedback level with the longest use time length corresponding to the haptic feedback parameter type of the mobile terminal.
[0082] FIG. 8 schematically shows a method for setting the haptic feedback of the vehicle-mounted terminal according to the use time length of the haptic feedback level according to an embodiment of the present disclosure.
[0083] As shown in FIG. 8, the mobile terminal and the vehicle-mounted terminal establish a connection 801; the vehicle-mounted terminal sends a mobile device haptic feedback parameter acquisition request 802 to the mobile terminal, the acquisition request including the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type, and the use time length of different haptic feedback levels corresponding to the haptic feedback parameter type; the mobile terminal acquires the haptic feedback parameter of the mobile terminal according to the acquisition request 402 803; the mobile device sends a mobile device haptic feedback parameter acquisition response 804 to the vehicle-mounted terminal, the acquisition response including the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type, and the use time length of different haptic feedback levels corresponding to the haptic feedback parameter type; the vehicle-mounted terminal acquires the number n of haptic feedback levels of the haptic feedback parameter corresponding to the vehicle-mounted terminal 805; the vehicle-mounted terminal judges whether m and n are equal 806; if m is equal to n, the currently used haptic feedback level of the haptic feedback parameter corresponding to the vehicle-mounted terminal is set to the haptic feedback level with the longest use time length 807; if m is not equal to n, 808, the vehicle-mounted terminal acquires n haptic feedback levels with longer use time length of the haptic feedback parameter corresponding to the mobile terminal 809; the currently used haptic feedback level of the haptic feedback parameter corresponding to the vehicle-mounted terminal is set to the haptic feedback level with the longest use time length among the n haptic feedback levels with longer use time length 810.
[0084] FIG. 9 schematically shows another schematic diagram of a haptic feedback setting method of a vehicle-mounted terminal according to use time length of a haptic feedback level according to an embodiment of the present disclosure.
[0085] As shown in FIG. 9, the mobile terminal and the vehicle-mounted terminal establish a connection 901; the vehicle-mounted terminal sends a mobile device haptic feedback parameter acquisition request 902 to the mobile terminal, the acquisition request including a haptic feedback parameter type of the mobile terminal, a number m of haptic feedback levels corresponding to the haptic feedback parameter type, and a currently used haptic feedback level q corresponding to the haptic feedback parameter type; the mobile terminal acquires the haptic feedback parameter of the mobile terminal according to the acquisition request 402 903; the mobile device sends a mobile device haptic feedback parameter acquisition response 904 to the vehicle-mounted terminal, the acquisition response including the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type, and the currently used haptic feedback level q corresponding to the haptic feedback parameter type; the vehicle-mounted terminal acquires the number n of haptic feedback levels of the haptic feedback parameter corresponding to the vehicle-mounted terminal 905; the vehicle-mounted terminal determines whether m and n are equal 906; if m is equal to n, the vehicle-mounted terminal sends a mobile device haptic feedback parameter acquisition request to the mobile terminal, the acquisition request including usage duration parameters of different haptic feedback levels corresponding to the haptic feedback parameter 908; the mobile terminal acquires the usage duration parameters of different haptic feedback levels corresponding to the haptic feedback parameter of the mobile device 909; the mobile terminal sends a mobile device haptic feedback parameter acquisition response to the vehicle-mounted terminal 910; the vehicle-mounted terminal matches the haptic feedback levels of the haptic feedback parameter corresponding to the vehicle-mounted terminal 911; and the vehicle-mounted terminal executes haptic feedback of the vehicle-mounted terminal 912.
[0086] Taking the vibration intensity as an example of the haptic feedback parameter, the mobile terminal and the vehicle-mounted terminal both have vibration intensity parameters, when the number of vibration intensity levels of the mobile terminal is equal to the number of vibration intensity levels of the vehicle-mounted terminal, the vibration intensity levels of the mobile terminal include three levels of high, medium, and low; the vibration intensity levels of the vehicle-mounted terminal include three levels of A, B, and C, when the currently used vibration intensity level of the mobile terminal is high, the currently used vibration intensity level of the vehicle-mounted terminal is also set to high, the corresponding relationship is shown in Table 1 below.
[0087] Table 1
[0088] When the number of vibration intensity levels of the mobile terminal is not equal to the number of vibration intensity levels of the vehicle-mounted terminal, the vibration intensity levels of the mobile terminal include three levels of high, medium, and low; the vibration intensity levels of the vehicle-mounted terminal include two levels of A and B, at this time, usage duration parameters X, Y, and Z corresponding to the three levels of high, medium, and low need to be acquired; if X>Y and X>Z, the corresponding relationship is shown in Table 2 below.
[0089] Table 2 If Z>X and Z>Y, the corresponding relationship is shown in Table 3 below.
[0090] Table 3 If Y>X and Y>Z, the corresponding relationship is shown in Table 4 below.
[0091] Table 4
[0092] FIG. 10 schematically shows a block diagram of a haptic feedback setting apparatus of a vehicle terminal according to an embodiment of the present disclosure.
[0093] As shown in FIG. 10, the haptic feedback setting apparatus 1000 of the vehicle terminal according to the embodiment includes a connecting module 1010, an obtaining module 1020, and a setting module 1030.
[0094] The connecting module 1010 is configured to establish a network connection between the vehicle terminal and the mobile terminal.
[0095] The obtaining module 1020 is configured to obtain a first haptic feedback parameter of the mobile terminal.
[0096] The setting module 1030 is configured to set a second haptic feedback parameter of the vehicle terminal according to the first haptic feedback parameter of the mobile terminal, so that the haptic feedback parameters of the vehicle terminal and the mobile terminal are matched.
[0097] Any of the connecting module 1010, the obtaining module 1020, and the setting module 1030 according to the embodiments of the present disclosure can be combined in one module / unit / sub-unit, or any of the modules / units / sub-units can be split into multiple modules / units / sub-units. Or at least part of the function of one or more of the modules / units / sub-units can be combined with at least part of the function of other modules / units / sub-units, and implemented in one module / unit / sub-unit. According to the embodiments of the present disclosure, at least one of the connecting module 1010, the obtaining module 1020, and the setting module 1030 can be at least partially implemented as a hardware circuit, such as a field programmable gate array (FPGA), a programmable logic array (PLA), a system on chip, a system on board, a system on package, an application specific integrated circuit (ASIC), or any other reasonable manner of hardware or firmware by integrating or packaging the circuit. Or at least one of the connecting module 1010, the obtaining module 1020, and the setting module 1030 can be at least partially implemented as a computer program module which can perform corresponding functions when the computer program module is run.
[0098] It should be noted that the haptic feedback setting apparatus part of the vehicle terminal in the embodiments of the present disclosure corresponds to the haptic feedback setting method part of the vehicle terminal in the embodiments of the present disclosure, and the description of the haptic feedback setting apparatus part of the vehicle terminal is specifically referred to the haptic feedback setting method part of the vehicle terminal, which will not be repeated here.
[0099] FIG. 11 schematically illustrates a block diagram of an electronic device suitable for implementing the above-described methods according to embodiments of the present disclosure. The electronic device shown in FIG. 11 is merely one example, and should not be taken as limiting the scope of the embodiments of the present disclosure.
[0100] As shown in FIG. 11, the electronic device 1100 according to embodiments of the present disclosure includes a processor 1110, which can perform various appropriate actions and processes according to programs stored in a read-only memory (ROM) 1120 or loaded from a storage section 1108 into a random access memory (RAM) 1103. The processor 1101 can include, for example, a general-purpose microprocessor (e.g., a CPU), an instruction set processor, and / or a related chipset, and / or a special-purpose microprocessor (e.g., an application-specific integrated circuit (ASIC)), and / or the like. The processor 1101 can also include an on-board processor for cache use. The processor 1101 can include a single processing unit or multiple processing units for executing different actions of the method processes according to embodiments of the present disclosure.
[0101] In the ROM 1103, various programs and data required for the operation of the electronic device 1100 are stored. The processor 1101, the ROM 1102, and the RAM 1103 are connected to each other via a bus 1104. The processor 1101 performs various operations of the method processes according to embodiments of the present disclosure by executing programs in the ROM 1102 and / or the RAM 1103. Note that the programs can also be stored in one or more memories other than the ROM 1102 and the RAM 1103. The processor 1101 can also perform various operations of the method processes according to embodiments of the present disclosure by executing programs stored in one or more memories.
[0102] According to embodiments of the present disclosure, the electronic device 1100 can also include an input / output (I / O) interface 1105, which is also connected to the bus 1104, and can include one or more of the following components connected to the input / output (I / O) interface 1105: an input section 1106 including a keyboard, a mouse, and the like; an output section 1107 including a cathode ray tube (CRT) monitor, a liquid crystal display (LCD), and a speaker, and the like; a storage section 1108 including a hard disk, and the like; and a communication section 1109 including a network interface card such as a LAN card, a modem, and the like. The communication section 1109 performs communication processing via a network such as the Internet. A drive 1110 is also connected to the input / output (I / O) interface 1105 as necessary. A removable recording medium 1111, such as a magnetic disk, an optical disk, a magneto-optical disk, a semiconductor memory, and the like, is attached to the drive 1110 as necessary, so that a computer program read therefrom is installed in the storage section 1108 as necessary.
[0103] According to an embodiment of the present disclosure, the method flow according to the embodiment of the present disclosure can be implemented as a computer software program. For example, the embodiment of the present disclosure includes a computer program product including a computer program carried on a computer-readable storage medium, the computer program containing program codes for executing the method shown in the flow chart. In such an embodiment, the computer program can be downloaded and installed from a network by the communication part 1109, and / or installed from the detachable medium 1111. When the computer program is executed by the processor 1101, the above-mentioned functions defined in the system of the embodiment of the present disclosure are executed. According to an embodiment of the present disclosure, the system, device, apparatus, module, unit, etc. described above can be implemented by computer program modules.
[0104] The present disclosure also provides a computer-readable storage medium, which can be included in the device / apparatus / system described in the above-mentioned embodiments; or can exist separately without being assembled into the device / apparatus / system. The above-mentioned computer-readable storage medium carries one or more programs, which, when executed, implement the method according to the embodiment of the present disclosure.
[0105] According to an embodiment of the present disclosure, the computer-readable storage medium can be a non-volatile computer-readable storage medium. For example, it can include but is not limited to portable computer diskette, hard disk, random access memory (RAM), read-only memory (ROM), erasable programmable read-only memory (EPROM or flash memory), portable compact disc read-only memory (CD-ROM), optical storage device, magnetic storage device, or any appropriate combination of the above. In the present disclosure, the computer-readable storage medium can be any tangible medium containing or storing a program that can be used by or in connection with an instruction execution system, apparatus or device.
[0106] For example, according to an embodiment of the present disclosure, the computer-readable storage medium can include one or more memories other than the ROM 1102 and / or the RAM 1103 and / or the ROM 1102 and the RAM 1103 described above.
[0107] The embodiment of the present disclosure also includes a computer program product including a computer program containing program codes for executing the method provided by the embodiment of the present disclosure, which is used to make the electronic device implement the control method of the monitoring device provided by the embodiment of the present disclosure when the computer program product is running on the electronic device.
[0108] The computer program can be stored in the shape of a tangible storage medium, such as an optical storage medium, a magnetic storage medium, or the like. The computer program can also be transmitted in a signal form, such as a carrier wave or the like, over a transmission medium, such as a wired network, a wireless network, or the like. The computer program element, which is preferably implemented in the form of a software package, is loaded into a working memory of a processor 1101 from a storage medium or a network connection. The computer program element comprises program code sections which are executed by the processor 1101 in the course of its work.
[0109] In one embodiment, the computer program can be stored in a tangible storage medium, such as a magnetic disk, an optical disk, or the like. In another embodiment, the computer program can be transmitted in a signal form, such as a carrier wave or the like, over a transmission medium, such as a wired network, a wireless network, or the like. The computer program element comprises program code sections which, when executed by a processor, instruct the processor to perform the steps of the above-described embodiments of the method for operating a system, a method for operating a device, a system, and a device.
[0110] According to an embodiment of the present disclosure, the program code portions of the computer program can be written in any combination of one or more programming languages, including high-level procedural or object-oriented programming language, and / or assembly / machine language. The programming languages include, but are not limited to, Java, C++, python, "C" language, or the like. The program code can be executed entirely on the user's computing device, partially on the user's computing device, partially on a remote computing device, or entirely on a remote computing device or server. In the case of a remote computing device, the remote computing device can be connected to the user's computing device through any kind of network, including a local area network (LAN) or a wide area network (WAN), or can be connected to an external computing device (for example, through the Internet using an Internet service provider).
[0111] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of the present disclosure. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in a block diagram or flowchart, and combinations of blocks in a block diagram or flowchart, may be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions. Those skilled in the art will understand that the features described in the various embodiments of the present disclosure can be combined and / or combined in various ways, even if such combinations are not explicitly described in the present disclosure. In particular, the features described in the various embodiments of this disclosure may be combined and / or combined in various ways without departing from the spirit and teachings of this disclosure. All such combinations and / or combinations fall within the scope of this disclosure.
[0112] The embodiments of this disclosure have been described above. However, these embodiments are for illustrative purposes only and are not intended to limit the scope of this disclosure. Although various embodiments have been described above, this does not mean that the measures in the various embodiments cannot be used advantageously in combination. Various substitutions and modifications can be made by those skilled in the art without departing from the scope of this disclosure, and all such substitutions and modifications should fall within the scope of this disclosure.
Claims
1. A method for setting haptic feedback of a vehicle terminal, comprising: establishing a network connection between the vehicle terminal and a mobile terminal; obtaining first haptic feedback parameters of the mobile terminal; setting second haptic feedback parameters of the vehicle terminal according to the first haptic feedback parameters of the mobile terminal, so that the haptic feedback parameters of the vehicle terminal and the mobile terminal are matched.
2. The method of claim 1, wherein, The first haptic feedback parameters comprise a haptic feedback parameter type of the mobile terminal, a number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, wherein m is an integer and m>1, and a first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal, wherein q is an integer and q≥1, q≤m, and the first haptic feedback level q is a currently used haptic feedback level of the haptic feedback parameter type of the mobile terminal; The obtaining of the first haptic feedback parameters of the mobile terminal comprises: obtaining the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal.
3. The method of claim 2, wherein, The second haptic feedback parameters comprise a currently used haptic feedback level of a haptic feedback parameter type corresponding to the vehicle terminal, and the setting of the second haptic feedback parameters of the vehicle terminal according to the first haptic feedback parameters of the mobile terminal comprises: setting the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal.
4. The method of claim 3, wherein, The setting of the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal comprises: obtaining a number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal, wherein n is an integer and n>1; setting the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal, and the number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal.
5. The method of claim 4, wherein, The setting of the currently used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal, the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal, and the number n of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal comprises: In the case that m is equal to n, setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as the first haptic feedback level q; In the case that m is greater than n, setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as a second haptic feedback level p, which is less than or equal to the first haptic feedback level q; In the case that m is less than n, setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as a third haptic feedback level o, which is greater than or equal to the first haptic feedback level q.
6. The method of claim 5, wherein, The setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as a second haptic feedback level p in the case that m is greater than n, comprises: In the case that m is greater than n, setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as a second haptic feedback level p, which is equal to the value of q*n / m after rounding.
7. The method of claim 5, wherein, The setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as a third haptic feedback level o in the case that m is less than n, comprises: In the case that m is less than n, setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as a third haptic feedback level o, which is equal to the value of q*n / m after rounding.
8. The method of claim 2, wherein, The second haptic feedback parameter comprises a haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal and a current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal; The setting the second haptic feedback parameter of the vehicle terminal according to the first haptic feedback parameter of the mobile terminal, comprises: Setting the haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal and the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal respectively according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal.
9. The method of claim 8, wherein, The setting the haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal and the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal respectively according to the haptic feedback parameter type of the mobile terminal, the number m of haptic feedback levels corresponding to the haptic feedback parameter type of the mobile terminal and the first haptic feedback level q corresponding to the haptic feedback parameter type of the mobile terminal, comprises: Setting the number of haptic feedback levels of the haptic feedback parameter type corresponding to the vehicle terminal as m; Setting the current used haptic feedback level of the haptic feedback parameter type corresponding to the vehicle terminal as q.
10. The method of claim 1, wherein, The first tactile feedback parameter comprises a tactile feedback parameter type of the mobile terminal, a number m of tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, wherein m is an integer and m>1, and a use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal; The first tactile feedback parameter of the mobile terminal is obtained, comprising: The tactile feedback parameter type of the mobile terminal, the number m of tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, and the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal are obtained.
11. The method of claim 10, wherein, The second tactile feedback parameter comprises a currently used tactile feedback level of a tactile feedback parameter type corresponding to the vehicle-mounted terminal; and the second tactile feedback parameter of the vehicle-mounted terminal is set according to the first tactile feedback parameter of the mobile terminal, comprising: The currently used tactile feedback level of the tactile feedback parameter type corresponding to the vehicle-mounted terminal is set according to the tactile feedback parameter type of the mobile terminal, the number m of tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, and the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal.
12. The method of claim 11, wherein, The currently used tactile feedback level of the tactile feedback parameter type corresponding to the vehicle-mounted terminal is set according to the tactile feedback parameter type of the mobile terminal, the number m of tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, and the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, comprising: The number n of tactile feedback levels corresponding to the tactile feedback parameter type of the vehicle-mounted terminal is obtained, wherein n is an integer and n>1; The currently used tactile feedback level of the tactile feedback parameter type corresponding to the vehicle-mounted terminal is set according to the tactile feedback parameter type of the mobile terminal, the number m of tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, and the number n of tactile feedback levels corresponding to the tactile feedback parameter type of the vehicle-mounted terminal.
13. The method of claim 12, wherein, The currently used tactile feedback level of the tactile feedback parameter type corresponding to the vehicle-mounted terminal is set according to the tactile feedback parameter type of the mobile terminal, the number m of tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal, and the number n of tactile feedback levels corresponding to the tactile feedback parameter type of the vehicle-mounted terminal, comprising: The n tactile feedback levels with longer use time lengths corresponding to the tactile feedback parameter type of the mobile terminal are determined according to the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal; The n tactile feedback levels with longer use time lengths corresponding to the tactile feedback parameter type of the mobile terminal are determined according to the use time length corresponding to different tactile feedback levels corresponding to the tactile feedback parameter type of the mobile terminal; According to the haptic feedback level relationship, a corresponding relationship between n haptic feedback levels with longer use time of the haptic feedback parameter type of the mobile terminal and n haptic feedback levels of the haptic feedback parameter type of the vehicle-mounted terminal is established; According to the corresponding relationship and the haptic feedback level with the longest use time of the haptic feedback parameter type of the mobile terminal, a haptic feedback level of the haptic feedback parameter type of the vehicle-mounted terminal is determined.
14. The method of claim 1, wherein, The haptic feedback parameters include system haptic feedback parameters and application haptic feedback parameters, and the first haptic feedback parameters of the mobile terminal are acquired, including: At least one of the system haptic feedback parameters and the application haptic feedback parameters of the mobile terminal is acquired; According to the first haptic feedback parameters of the mobile terminal, the second haptic feedback parameters of the vehicle-mounted terminal are set, including: According to the system haptic feedback parameters and / or the application haptic feedback parameters of the mobile terminal, the system haptic feedback parameters and / or the application haptic feedback parameters of the vehicle-mounted terminal are set.
15. The method of claim 14, wherein, The vehicle-mounted terminal includes a vehicle-mounted display terminal, and the vehicle-mounted display terminal integrates a haptic feedback function. The network connection with the mobile terminal is established, including: The vehicle-mounted display terminal receives a connection request of the mobile terminal, authenticates the connection request, and establishes the network connection with the mobile terminal after the authentication is passed.
16. The method of claim 2, wherein, The haptic feedback parameter type includes at least one of vibration intensity, vibration time, and vibration waveform.
17. An electronic device, comprising: one or more processors; a memory for storing one or more programs, wherein when the one or more programs are executed by the one or more processors, the one or more processors implement the method of any one of claims 1-16.
18. A computer storage medium having stored thereon executable instructions that, when executed by a processor, cause the processor to implement the method of any one of claims 1-16.
19. A computer program product, comprising a computer program that, when executed by a processor, implements the method of any one of claims 1-16.
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