Touch screen response distance adjustment method and apparatus, and electronic device

By acquiring user operation parameters and environmental information, the touch screen response distance is dynamically adjusted, solving the problem of insufficient touch screen sensitivity and improving touch effect and user experience.

CN115586849BActive Publication Date: 2026-02-06VIVO MOBILE COMM CO LTD
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Patent Information

Application Number
CN202211258693.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-14
Publication Date
2026-02-06
Estimated Expiration
2042-10-14

AI Technical Summary

Technical Problem

The touch response distance of existing touch screens is usually a fixed value, which cannot adapt to changes in actual usage, resulting in poor touch performance.

Method used

By acquiring user operation parameters, actual touch screen distance, and usage environment information, the touch screen response distance is dynamically adjusted to meet set conditions, including exceeding user operation parameters, changes in actual touch screen distance, and abnormal environments.

Benefits of technology

It improves the sensitivity and touch response of the touchscreen, enhancing the user experience.

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Abstract

The application discloses a touch screen response distance adjustment method and device and electronic equipment, and belongs to the touch control technical field. The touch screen response distance adjustment method comprises the following steps: obtaining target information related to the touch screen response distance, wherein the target information comprises at least one of the following: user operation parameters, actual touch screen distance and use environment information; and adjusting the touch screen response distance when the target information meets a set condition, wherein the target information meeting the set condition comprises at least one of the following: the user operation parameters meeting an over-standard condition, the user operation parameters comprising at least one of the following: a jump point frequency parameter, a broken touch frequency parameter and an invalid touch frequency parameter; the actual touch screen distance changing; and the use environment information indicating that the touch screen is in an abnormal environment, wherein the abnormal environment comprises at least one of the following: the electronic equipment corresponding to the touch screen being in a charging state, the running temperature of the electronic equipment corresponding to the touch screen being lower than a temperature threshold, the touch screen being in a deformation state and the touch screen surface having liquid.
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Description

TECHNICAL FIELD

[0001] The present application belongs to the technical field of touch control, and particularly relates to a touch screen response distance adjustment method and device and electronic equipment. BACKGROUND

[0002] With the development of touch control devices, the sensitivity requirement of users for touch screens is also higher and higher. An important parameter for adjusting the sensitivity is the touch screen response distance. The touch screen response distance refers to the critical distance between a touch control tool such as a finger and a touch screen when the touch screen reports a point after the touch control tool touches the touch screen.

[0003] In the application, a fixed value is usually used for the touch screen response distance. However, in the actual use of the touch screen, the optimal value of the touch screen response distance may change due to the actual use of the touch control device. This makes the touch control electronic device with a single touch screen response distance value have a poor touch screen response effect. SUMMARY

[0004] The embodiments of the present application provide a touch screen response distance adjustment method, device and electronic equipment, and can solve the problem of poor touch screen response effect of a touch screen.

[0005] In a first aspect, the embodiments of the present application provide a touch screen response distance adjustment method, which comprises the following steps.

[0006] Obtaining target information related to the touch screen response distance of a touch screen, wherein the target information comprises at least one of the following: a user operation parameter, an actual touch screen distance, and use environment information;

[0007] Adjusting the touch screen response distance when the target information meets a set condition, wherein the target information meeting the set condition comprises at least one of the following:

[0008] The user operation parameter meets an over-standard condition, and the user operation parameter comprises at least one of the following: a jump point frequency parameter, a break touch frequency parameter, and an invalid touch control frequency parameter;

[0009] The actual touch screen distance changes, and the actual touch screen distance is the actual distance between a touch control tool and the touch screen when the touch control tool touches the touch screen;

[0010] The use environment information indicates that the touch screen is in an abnormal environment, and the abnormal environment comprises at least one of the following: the electronic device corresponding to the touch screen is in a charging state, the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold, the touch screen is in a deformation state, and there is liquid on the surface of the touch screen.

[0011] In a second aspect, an apparatus for adjusting a touch screen response distance is provided. The apparatus includes:

[0012] an obtaining module configured to obtain target information related to the touch screen response distance, the target information including at least one of a user operation parameter, an actual touch screen distance, and usage environment information;

[0013] an adjusting module configured to adjust the touch screen response distance when the target information satisfies a set condition, wherein the target information satisfying the set condition includes at least one of:

[0014] the user operation parameter satisfying an out-of-limit condition, the user operation parameter including at least one of a jump point frequency parameter, a break touch frequency parameter, and an invalid touch frequency parameter;

[0015] the actual touch screen distance changing, the actual touch screen distance being an actual distance between a touch control and the touch screen when the touch control touches the touch screen;

[0016] the usage environment information indicating that the touch screen is in an abnormal environment, the abnormal environment including at least one of the touch screen corresponding electronic device being in a charging state, the touch screen corresponding electronic device having a running temperature lower than a temperature threshold, the touch screen being in a deformation state, and the touch screen surface having liquid.

[0017] In a third aspect, an electronic device is provided. The electronic device includes a processor and a memory. The memory stores programs or instructions executable on the processor. The programs or instructions, when executed by the processor, implement the steps of the method of the first aspect.

[0018] In a fourth aspect, a readable storage medium is provided. The readable storage medium stores programs or instructions. The programs or instructions, when executed by a processor, implement the steps of the method of the first aspect.

[0019] In a fifth aspect, a chip is provided. The chip includes a processor and a communication interface. The communication interface is coupled to the processor. The processor is configured to execute programs or instructions to implement the method of the first aspect.

[0020] In a sixth aspect, a computer program product is provided. The program product is stored in a storage medium. The program product is executed by at least one processor to implement the method of the first aspect.

[0021] In the embodiments of the present application, target information related to the touch screen response distance of the touch screen is acquired, and the touch screen response distance is adjusted when the target information meets the set condition. The target information includes at least one of the following: user operation parameters, actual touch screen distance, and use environment information. The target information meeting the set condition includes at least one of the following: the user operation parameters meet the over-standard condition; the actual touch screen distance changes; and the use environment information indicates that the touch screen is in an abnormal environment. The user operation parameters include at least one of the following: a jump point frequency parameter, a broken touch frequency parameter, and an invalid touch frequency parameter. The actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control touches the touch screen. The abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen is in a charging state; the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold; the touch screen is in a deformation state; and there is liquid on the surface of the touch screen. Since the value of the user operation parameters of the touch screen, the change of the actual touch screen distance of the touch screen, and the use environment of the touch screen can reflect whether the touch screen response distance needs to be adjusted, the touch screen response distance is adjusted when the user operation parameters meet the over-standard condition, the actual touch screen distance changes, and the touch screen is in an abnormal environment, thereby realizing dynamic adjustment of the touch screen response distance, improving the touch screen response effect of the touch screen, improving the sensitivity of the touch screen, and improving the user touch operation experience. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 is an introduction schematic diagram of a broken touch provided by an embodiment of the present application;

[0023] Figure 2 is a flowchart of a touch screen response distance adjustment method provided by an embodiment of the present application;

[0024] Figure 3 is an introduction schematic diagram of an actual touch screen distance provided by an embodiment of the present application;

[0025] Figure 4 is a planar schematic diagram of a touch screen provided by an embodiment of the present application;

[0026] Figure 5 is a flowchart of a touch screen response distance adjustment method provided by an embodiment of the present application;

[0027] Figure 6 is a structural schematic diagram of another touch screen response distance adjustment device provided by an embodiment of the present application;

[0028] Figure 7 is a structural schematic diagram of an electronic device provided by an embodiment of the present application;

[0029] Figure 8is a hardware schematic diagram of an electronic device provided by an embodiment of the present application. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all of them. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art belong to the scope of protection of the present application.

[0031] The terms "first", "second", and the like in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be interchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally a category and do not limit the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / ", generally represents a "or" relationship between the front and rear associated objects.

[0032] The touch screen response distance adjustment method provided by the embodiments of the present application will be described in detail below with reference to the drawings, specific embodiments and application scenarios.

[0033] For ease of understanding, the following describes some terms related to the present application.

[0034] If the touch screen is to be normally reported, the frequency of the touch operation of the touch control on the touch screen when the touch operation is performed manually will not be too fast, that is, there is a certain time interval between the adjacent two touch operations performed by the user, or in other words, there is a certain time interval between the lifting node operation of a touch operation and the pressing node operation of the next touch operation. In addition, the touch control has a certain pressing area on the touch screen during the touch operation. Based on this, the skip point refers to a click operation with a pressing area less than an area threshold, a time interval between adjacent touch operations less than a time length threshold, and a distance between the pressing positions of multiple touch operations on the touch screen less than a distance threshold. Since the higher the screen sensitivity of the touch screen, the greater the probability of false recognition of the lifting node operation by the touch screen. Therefore, the skip point frequency of the touch screen can reflect its screen sensitivity. Thus, the sensitivity of the touch screen can be adjusted by adjusting the touch screen response distance of the touch screen, thereby improving the skip point problem.

[0035] Discontinuity in sliding operation refers to the phenomenon where the sliding trajectory has a breakpoint. In a sliding operation with a breakpoint, multiple sliding trajectories are spatially continuous. That is, the later-generated sliding trajectory among these multiple trajectories can coincide with the target trajectory, which is the trajectory predicted using a trajectory prediction algorithm based on the earlier-generated sliding trajectory. Furthermore, the time interval between the generation of these multiple sliding trajectories is relatively short. The trajectory prediction algorithm can be a Kalman prediction algorithm or a Markov decision tree algorithm, etc. Based on this, a disconnection can be determined when two sliding trajectories meet the disconnection condition. This disconnection condition is that the later-generated sliding trajectory coincides with the target trajectory, and the time interval between the generation of the two sliding trajectories is less than a time threshold. The target trajectory is the trajectory predicted using a trajectory prediction algorithm that is continuous with the earlier-generated sliding trajectory. For example, ... Figure 1 As shown, if the sliding trajectory L2 coincides with the target trajectory predicted by the trajectory prediction algorithm based on the sliding trajectory L1, and the interval between the generation times of sliding trajectory L2 and sliding trajectory L1 is less than a time threshold, then a touch interruption is determined to have occurred. Since the lower the screen sensitivity of a touchscreen, the worse its ability to recognize continuous press operations, the touch interruption frequency can also reflect its screen sensitivity. Therefore, the touchscreen sensitivity can be adjusted by regulating the touchscreen response distance, thereby improving the touch interruption problem.

[0036] Invalid touch: An invalid touch refers to a click operation where the capacitive sensing value does not reach the reporting threshold, but the under-screen pressure sensor detects a sudden change in pressure. The reporting threshold is the capacitive sensing value when the touchscreen reports a touch. Since the lower the screen sensitivity of a touchscreen, the worse its ability to recognize click operations, the touchscreen sensitivity can be adjusted by changing the touch response distance, thereby improving the issue of missed touches.

[0037] Please refer to Figure 2 This document illustrates a flowchart of a touchscreen response distance adjustment method provided in an embodiment of this application. The touchscreen response distance adjustment method can be applied to electronic devices with touchscreens. Optionally, the electronic device may further include an under-display sensor. The under-display sensor is disposed within the electronic device on the side opposite to the light-emitting side of the touchscreen. The under-display sensor is used to detect the distance between itself and a touch control. For example, the under-display sensor may be an ultrasonic fingerprint sensor, an under-display infrared sensor, or an under-display camera sensor, etc. The touch control may be a stylus or a finger, etc., used to trigger touch operations on the touchscreen. In some embodiments of this application, the electronic device may be a terminal, a wearable device, a personal computer, or a tablet computer, etc.

[0038] like Figure 2 As shown, the touchscreen response distance adjustment method provided in this application embodiment includes:

[0039] In step 201, target information related to the touch screen response distance of the touch screen is acquired. The target information includes at least one of the following: user operation data, actual touch screen distance, and use environment information.

[0040] In an embodiment of the present application, the target information can include data reflecting the touch screen response effect of the touch screen, i.e., data reflecting the sensitivity of the touch screen. The target information can also include data affecting the touch screen response effect, i.e., data affecting the sensitivity of the touch screen. Alternatively, the target information includes user operation parameters of the touch screen, actual touch screen distance of the touch screen, and use environment information of the touch screen.

[0041] The user operation parameters are used to reflect the frequency of abnormal user operations received by the touch screen. The user operation parameters include at least one of the following: jump point frequency parameter, broken touch frequency parameter, and invalid touch frequency parameter. The jump point frequency parameter refers to the frequency of jump points in all touch operations received by the touch screen within a set time period. The broken touch frequency parameter refers to the frequency of broken touches in all touch operations received by the touch screen within a set time period. The invalid touch frequency parameter refers to the frequency of invalid touches in all touch operations received by the touch screen within a set time period. Alternatively, the user operation parameters include the jump point frequency parameter, the broken touch frequency parameter, and the invalid touch frequency parameter. In the case where the target information includes user operation data, the process of acquiring the user operation data by the electronic device can include: the electronic device collects the number of jump points, the number of broken touches, and the number of invalid touches in all touch operations received by the touch screen within a set time period. According to the number of jump points, the number of broken touches, the number of invalid touches, and the number of touch operations received by the touch screen within the set time period, the jump point frequency, the broken touch frequency, and the invalid touch frequency are calculated to obtain the jump point frequency parameter, the broken touch frequency parameter, and the invalid touch frequency parameter.

[0042] The actual touch screen distance of the touch screen is the actual distance between the touch control and the touch screen when the touch control is used to perform touch operations on the touch screen. In one application scenario, as shown in FIG. 2, a protective film is attached to the touch screen. The actual touch screen distance of the touch screen refers to the distance between the upper surface of the protective film and the upper surface of the touch screen when the touch control is used to perform touch operations on the touch screen. Figure 3

[0043] Alternatively, in the case where the target information includes the actual touch screen distance of the touch screen, the process of acquiring the actual touch screen distance of the touch screen by the electronic device can include: when the touch operation of the touch control on the touch screen is received, the total distance between the under-screen sensor of the electronic device and the touch control is acquired by the under-screen sensor. The actual touch screen distance is calculated by subtracting the inner screen distance from the total distance, and the inner screen distance is the distance between the under-screen sensor and the touch screen.

[0044] ​Optionally, when the touch operation of the touch control on the touch screen is received, and the pressing area of the touch operation is greater than the area threshold, the total distance between the under-screen sensor and the touch control is obtained. The pressing area of the touch operation refers to the contact area between the touch control and the touch screen when the touch control performs the touch operation on the touch screen. In this way, the greater the pressing area of the touch operation, the higher the accuracy of the total distance detected by the under-screen sensor. Therefore, the pressing area of the touch operation greater than the area threshold is added to the triggering condition of obtaining the total distance, so as to limit that only the touch operation with a large touch area can trigger the detection of the total distance, thereby improving the accuracy of obtaining the total distance between the under-screen sensor and the touch control.

[0045] The inner screen distance of one touch screen is usually a fixed value, which can be stored in the electronic device corresponding to the touch screen. Please continue to refer to Figure 3 The inner screen distance S2 of one touch screen is a fixed value. After the electronic device obtains the total distance S1+S2 through the under-screen sensor, the actual touch screen distance S1 is calculated by subtracting the inner screen distance from the total distance.

[0046] In some embodiments of the present application, the use environment information of the touch screen can include at least one of the following: charging information of the electronic device, running temperature of the electronic device, deformation information of the touch screen, and screen state information of the touch screen. The charging information is used to reflect whether the electronic device is in a charging state. The deformation information is used to reflect whether the touch screen is in a deformation state. The screen state information is used to reflect whether there is liquid on the surface of the touch screen.

[0047] Optionally, in a case where the target information includes the use environment information, and the use environment information includes the charging information of the electronic device, the process of obtaining the charging information of the electronic device by the electronic device can include: detecting whether the electronic device is in a charging state, and obtaining the charging information according to the detection result.

[0048] In a case where the target information includes the running temperature of the electronic device, the process of obtaining the running temperature of the electronic device by the electronic device can further include: obtaining the running temperature detected by a temperature sensor in the electronic device through the temperature sensor.

[0049] In a case where the target information includes the deformation information of the touch screen, the process of obtaining the deformation information of the touch screen by the electronic device can further include: obtaining a pressure value of the touch screen received by a pressure sensor of the touch screen through the pressure sensor, and comparing the pressure value with a pressure threshold. The deformation information is obtained according to the comparison result. In a case where the comparison result indicates that the pressure value is greater than the pressure threshold, the deformation information is used to reflect that the touch screen is in a deformation state. In a case where the comparison result indicates that the pressure value is less than or equal to the pressure threshold, the deformation information is used to reflect that the touch screen is not in a deformation state.

[0050] Because the presence of conductive liquid on the touchscreen surface leads to a larger perceived pressure range when using a touch control, the electronic device can acquire this screen state information by comparing the pressure range of the touch control with a target range threshold upon receiving a touch operation. The electronic device then obtains the screen state information based on the comparison result. Specifically, if the comparison result indicates that the pressure range of the touch control is greater than the target range threshold, the screen state information indicates the presence of liquid on the touchscreen surface. If the comparison result indicates that the pressure range of the touch control is less than or greater than the target range threshold, the screen state information indicates the absence of liquid on the touchscreen surface.

[0051] Step 202: When the target information meets the set conditions, adjust the touch screen response distance.

[0052] In this embodiment, after acquiring target information, the touch device can determine whether the target information meets set conditions. If the target information meets the set conditions, the touch screen response distance is adjusted. If the target information does not meet the set conditions, the step of adjusting the touch screen response distance may not be performed.

[0053] The target information must meet at least one of the following conditions: user operation parameters exceed the specified limits; the actual touchscreen distance changes; or environmental information indicates that the touchscreen is in an abnormal environment. An abnormal environment includes at least one of the following: the electronic device corresponding to the touchscreen is charging; the operating temperature of the electronic device corresponding to the touchscreen is below a temperature threshold; the touchscreen is in a deformed state; or there is liquid on the touchscreen surface. Liquid on the touchscreen surface refers to the presence of a conductive liquid on the touchscreen surface. In one application scenario, when a wet finger performs a touch operation on the touchscreen, the contact point of the wet finger on the touchscreen becomes covered with a conductive liquid.

[0054] In this embodiment, the user operation parameters exceeding the standard indicates a high frequency of abnormal user operations. Optionally, the user operation parameters exceeding the standard include: any one of the user operation parameters on the touchscreen does not belong to its corresponding normal parameter range.

[0055] The user operation parameter can have a corresponding normal parameter range. The value of the user operation parameter within the normal parameter range indicates that the frequency of the user's abnormal operation is within the fault tolerance range. Alternatively, the touch device can store the normal parameter range corresponding to each of the plurality of user operation parameters. After obtaining the target information including the plurality of user operation parameters, the touch device can determine whether each user operation parameter is within its corresponding normal parameter range. When any one of the user operation parameters is not within its corresponding normal parameter range, it is determined that the user operation parameter meets the over-standard condition, and it is determined that the target information meets the set condition. When each user operation parameter is within its corresponding normal parameter range, it is determined that the user operation parameter does not meet the over-standard condition, and it is determined that the target information does not meet the set condition.

[0056] In another optional case, the user operation parameter meets the over-standard condition includes that the touch experience index of the touch screen is not within the normal index range. The touch experience index is determined based on the value of the user operation parameter and the weight of the user operation parameter.

[0057] In the embodiments of the present application, after the electronic device collects the target information including the plurality of user operation parameters, the electronic device can calculate the touch experience index based on the value of the user operation parameter and the weight of the user operation parameter. The electronic device determines whether the touch experience index is within the normal index range. When the touch experience index is not within the normal index range, it is determined that the user operation parameter meets the over-standard condition, and it is determined that the target information meets the set condition. When the touch experience index is within the normal index range, it is determined that the user operation parameter does not meet the over-standard condition, and it is determined that the target information does not meet the set condition. Alternatively, the electronic device can locally store the normal index range of each user operation parameter. Alternatively, the electronic device can obtain the normal index range of each user operation parameter from a third-party device. The value of the normal index range can be determined according to actual conditions. The smaller the value of the normal index range, the higher the adjustment accuracy of the screen response distance of the touch screen.

[0058] Optionally, the touch experience index can be a value obtained by performing weighted summation processing on the values of the user operation parameters based on the weights of the user operation parameters, i.e., performing weighted summation operation on the values of the user operation parameters and the weights of the user operation parameters to obtain the touch experience index. For example, assume that the user operation parameters include the jump frequency parameter, the break frequency parameter, and the invalid touch frequency parameter. The touch experience index R satisfies: R=A×S1+B×S2+C×S3. Wherein, A is the jump frequency parameter, S1 is the weight of the jump frequency parameter. B is the break frequency parameter, S2 is the weight of the break frequency parameter. C is the invalid touch frequency parameter, S3 is the weight of the invalid touch frequency parameter. Alternatively, the touch experience index can also be a value obtained by performing weighted average processing on the values of the user operation parameters based on the weights of the user operation parameters, i.e., performing weighted average operation on the values of the user operation parameters and the weights of the user operation parameters to obtain the touch experience index. Wherein, the weight of the user operation parameter can be positively correlated with the influence degree of the abnormal operation corresponding to the user operation parameter on the screen sensitivity.

[0059] In the embodiment of the present application, the change of the actual touch screen distance of the touch screen can directly reflect whether the current touch screen response distance of the touch screen is appropriate. Optionally, the electronic device can store the actual touch screen distance of each touch screen it acquires. After the electronic device performs step 201 to acquire the actual touch screen distance related to the touch screen response distance of the touch screen, it can compare the actual touch screen distance with the target historical touch screen distance, which is the actual touch screen distance of the touch screen that the electronic device acquires last time. In the case that the actual touch screen distance is not equal to the target historical touch screen distance, it is determined that the actual touch screen distance has changed, so as to determine that the target information meets the set condition. In the case that the actual touch screen distance is equal to the target historical touch screen distance, it is determined that the actual touch screen distance has not changed, so as to determine that the target information does not meet the set condition.

[0060] In the embodiment of the present application, the use environment information indicating that the touch screen is in an abnormal environment means that the current use environment of the touch screen has a great influence on the normal change of the capacitive sensing amount of the touch screen. Wherein, the abnormal environment at least includes one of the following: the electronic device corresponding to the touch screen is in a charging state, the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold, the touch screen is in a deformation state, and there is liquid on the surface of the touch screen.

[0061] In the embodiments of the present application, when the electronic device determines that the use environment information indicates that the electronic device is in a charging state, the electronic device determines that the use environment information indicates that the touch screen is in an abnormal environment, to determine whether the target information meets the set condition. Alternatively, when the electronic device determines that the charging information in the use environment information indicates that the electronic device is in a charging state, the electronic device determines that the use environment information indicates that the touch screen is in an abnormal environment. Since the touch screen generates electromagnetic wave radiation in the charging state, electromagnetic wave interference can cause a large jump in the capacitive sensing amount of the touch screen, and a large change in the capacitive sensing amount can easily cause a jump point. Therefore, the electronic device can adjust the touch screen response distance after entering the charging state to reduce the sensitivity of the touch screen, thereby reducing the probability of generating a jump point.

[0062] In the embodiments of the present application, when the electronic device determines that the use environment information indicates that the operating temperature of the electronic device is lower than the temperature threshold, the electronic device determines that the use environment information indicates that the touch screen is in an abnormal environment, to determine whether the target information meets the set condition. Alternatively, the electronic device can compare the operating temperature in the use environment information with the temperature threshold when the operating temperature in the use environment information is obtained. When the operating temperature is lower than the temperature threshold, the electronic device determines that the use environment information indicates that the touch screen is in an abnormal environment. Since temperature changes in the circuit affect the impedance of the circuit, changes in the operating temperature of the electronic device affect the impedance of the circuit in the touch screen, and thus affect the capacitive sensing change amount of the touch screen. Figure 4 As shown in FIG. 8, when the operating temperature of the electronic device is low, i.e., the electronic device is in a low-temperature operating state, the environmental temperature of the touch screen A0 is low. At this time, if a finger performs a touch operation on the touch screen, the display area A1 of the touch screen at the finger pressing position will be raised in temperature due to the absorption of the temperature of the finger, causing the capacitive sensing amount of the display area A1 to change. Moreover, due to the increase in the environmental temperature of the display area A1, a temperature difference is formed between the display area A1 of the touch screen and other areas of the touch screen A0. Therefore, the electronic device cannot accurately obtain the finger pressing position range and the finger pressing duration, thereby affecting the regulation and control calculation related to the finger pressing position range and the finger pressing duration. Therefore, the electronic device can adjust the touch screen response distance when the operating temperature thereof is lower than the temperature threshold to improve the sensitivity of the touch screen, thereby avoiding abnormal operations of invalid touch control responses.

[0063] In the embodiments of the present application, when the electronic device determines that the use environment information indicates that the touch screen is in a deformation state, the electronic device determines that the use environment information indicates that the touch screen is in an abnormal environment, so as to determine whether the target information meets the set condition. Alternatively, the electronic device can determine that the use environment information indicates that the touch screen is in an abnormal environment when the deformation information in the use environment information indicates that the touch screen is in a deformation state. Since the electronic device is in a deformation state, the pressing area of the touch control on the touch screen is likely to be offset compared with the normal pressing area, and the normal pressing area refers to the pressing area corresponding to the electronic device in a non-deformation state. Therefore, the accuracy of the pressing position range of the touch control on the touch screen obtained by the electronic device is low, which further affects the regulation and control calculation related to the factor of the pressing position range. Therefore, when the electronic device determines that the touch screen is in a deformation state, the electronic device can adjust the touch screen response distance to improve the sensitivity of the touch screen, thereby avoiding abnormal operations of invalid touch control responses.

[0064] In the embodiments of the present application, when the electronic device determines that the use environment information indicates that the touch screen surface has liquid, the electronic device determines that the use environment information indicates that the touch screen is in an abnormal environment, so as to determine whether the target information meets the set condition. Alternatively, the electronic device can determine that the use environment information indicates that the touch screen is in an abnormal environment when the screen state information in the use environment information indicates that the touch screen surface has liquid. Since the touch screen surface has liquid, the touch operation will cause the touch screen to sense a larger pressing position range of the touch control due to the existence of liquid on the touch screen surface. Therefore, the accuracy of the obtained pressing position range is low, which further affects the regulation and control calculation related to the factor of the pressing position range. Therefore, when the electronic device determines that the touch screen surface has liquid, the electronic device can adjust the touch screen response distance to improve the sensitivity of the touch screen, thereby avoiding abnormal operations of invalid touch control responses.

[0065] In the embodiments of the present application, the electronic device adjusts the touch screen response distance when the target information meets the set condition. The electronic device can perform one or more adjustments of the touch screen response distance when the target information meets the set condition. Alternatively, the process of adjusting the touch screen response distance by the electronic device includes adjusting the touch screen response distance to a target response distance.

[0066] The target response distance can be a touch screen response distance corresponding to the target information. Alternatively, the electronic device can store a plurality of target information and a target response distance corresponding to each target information. The content in each target information is different, and the target response distance corresponding to each target information is a preferred touch screen response distance of the touch screen. The preferred touch screen response distance can be a value determined according to human experience, or can also be a value measured according to experiments. The electronic device adjusts the touch screen response distance to the target response distance corresponding to the target information stored by the electronic device. For example, it is assumed that the target information includes an actual touch screen distance. The electronic device stores first target information, second target information, a target response distance corresponding to the first target information, and a target response distance corresponding to the second target information. The actual touch screen distance in the first target information is in a first interval. The actual touch screen distance in the second target information is in a second interval. When the target information meets the set condition, if the electronic device determines that the actual touch screen distance in the target information is in the first interval, the electronic device adjusts the touch screen response distance to the target response distance corresponding to the first target information stored by the electronic device.

[0067] Alternatively, the target response distance can also include a first response distance or a second response distance. The first response distance can be a value with a set increment compared with the touch screen response distance before adjustment. The second response distance can be a value with a set decrement compared with the touch screen response distance before adjustment. The electronic device can adjust the touch screen response distance to the first response distance or the second response distance according to the specific condition that the target information meets the set condition. When the target information that meets the set condition reflects that the sensitivity of the touch screen needs to be improved, the touch screen response distance is adjusted to the second response distance. When the target information that meets the set condition reflects that the sensitivity of the touch screen needs to be reduced, the touch screen response distance is adjusted to the first response distance. For example, when it is determined that the use environment information indicates that the electronic device is in a charging state, it indicates that the sensitivity of the touch screen needs to be reduced, and the electronic device adjusts the touch screen response distance to the first response distance. When it is determined that the use environment information indicates that the operating temperature of the electronic device is lower than a temperature threshold, it indicates that the sensitivity of the touch screen needs to be improved, and the electronic device adjusts the touch screen response distance to the second response distance.

[0068] It should be noted that the electronic device in some embodiments of the present application can repeatedly perform the steps of obtaining target information and adjusting the touch screen response distance when the target information meets the set condition, so as to configure a suitable touch screen response distance for the touch screen according to the specific condition of the electronic device reflected by the target information.

[0069] In the embodiments of the present application, since the parameters in the user operation parameters need to be counted for the jump points, the broken touch, and the invalid touch in the touch operation within the set time period before calculation, it can be considered that the process of judging whether the user operation parameters meet the over-standard condition is non-instantaneous. However, the process of the actual touch screen distance changing and the touch screen entering the abnormal environment is instantaneous. Therefore, it can be considered that the process of judging whether the actual touch screen distance changes and judging whether the use environment information indicates that the touch screen is in the abnormal environment is instantaneous. In this way, the adjustment trigger condition of the touch screen response distance includes both the instantaneous condition and the non-instantaneous condition, which is rich and improves the timeliness of adjusting the touch screen response distance.

[0070] In the embodiments of the present application, the target information related to the touch screen response distance of the touch screen is acquired, so as to adjust the touch screen response distance when the target information meets the set condition. The target information includes at least one of the following: the user operation parameter, the actual touch screen distance, and the use environment information. The target information meeting the set condition includes at least one of the following: the user operation parameter meeting the over-standard condition; the actual touch screen distance changing; and the use environment information indicating that the touch screen is in the abnormal environment. The user operation parameter includes at least one of the following: the jump point frequency parameter, the broken touch frequency parameter, and the invalid touch frequency parameter. The actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control touches the touch screen. The abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen being in a charging state, the running temperature of the electronic device corresponding to the touch screen being lower than a temperature threshold, the touch screen being in a deformation state, and the touch screen surface having liquid. Since the value of the user operation parameter of the touch screen, the change of the actual touch screen distance of the touch screen, and the use environment of the touch screen can reflect whether the touch screen response distance needs to be adjusted, the touch screen response distance is controlled to be adjusted when the user operation parameter meets the over-standard condition, the actual touch screen distance changes, and the touch screen is in the abnormal environment, so as to realize the dynamic adjustment of the touch screen response distance, improve the touch screen response effect of the touch screen, improve the sensitivity of the touch screen, and improve the user touch operation experience.

[0071] Optionally, the adjustment process of the touch screen response distance in the embodiments of the present application can also be a dynamic adjustment process. As shown in Figure 5 The implementation process of adjusting the touch screen response distance can include the following steps.

[0072] In step 501, the touch screen response distance is adjusted to the first distance when the actual touch screen distance changes and / or the use environment information indicates that the touch screen is in the abnormal environment.

[0073] Optionally, the first distance can be a current actual touch screen distance of the touch screen. Alternatively, the first distance can be a preset distance. In the case where the first distance is the current actual touch screen distance of the touch screen, the electronic device can obtain the current actual touch screen distance of the touch screen when it is determined that the actual touch screen distance has changed, and / or the environment information indicates that the touch screen is in an abnormal environment, and the target information satisfies the set condition, and adjust the touch screen response distance to the current actual touch screen distance of the touch screen, thereby ensuring the accuracy of the adjustment of the touch screen response distance.

[0074] In step 502, a current user operation parameter of the touch screen is obtained.

[0075] In the embodiments of the present application, the electronic device can obtain a current user operation parameter of the electronic device after the touch screen response distance is adjusted to the actual touch screen distance. After obtaining the user operation parameter, the electronic device determines whether the user operation parameter satisfies an over-standard condition. When the current user operation parameter does not satisfy the over-standard condition, it indicates that the adjusted touch screen response distance is appropriate. The electronic device can determine that the actual touch screen distance is an optimal parameter, and the electronic device can not perform the step of adjusting the screen response distance. When the current user operation parameter satisfies the over-standard condition, it indicates that the adjusted touch screen response distance is not appropriate. The electronic device can perform step 503 to adjust the touch screen response distance again. It should be noted that the implementation manner of the electronic device determining whether the current user operation parameter of the touch screen satisfies the over-standard condition can refer to the implementation manner of the electronic device determining that the user operation parameter satisfies the over-standard condition, which is not limited in the embodiments of the present application.

[0076] In step 503, when the current user operation parameter satisfies the over-standard condition, the adjusted touch screen response distance is updated again until the current user operation parameter of the touch screen does not satisfy the over-standard condition.

[0077] In the embodiments of the present application, when the current user operation parameter satisfies the over-standard condition, the adjusted touch screen response distance can be updated again. After updating the touch screen response distance, the step of obtaining the current user operation parameter of the touch screen in step 502 is performed again, and it is determined whether the obtained current user operation parameter of the touch screen satisfies the over-standard condition. If the user operation parameter satisfies the over-standard condition, it indicates that the adjusted touch screen response distance is not appropriate, and the electronic device performs step 503 to update the adjusted touch screen response distance again until the current user operation parameter of the touch screen does not satisfy the over-standard condition. If the user operation parameter does not satisfy the over-standard condition, it indicates that the adjusted touch screen response distance is appropriate, and the electronic device can determine that the actual touch screen distance is an optimal parameter, and the electronic device can not perform the step of adjusting the screen response distance. In an optional implementation manner, the implementation manner of the electronic device updating the touch screen response distance can refer to the implementation manner of the electronic device adjusting the touch screen response distance to the target response distance.

[0078] Optionally, the process that the electronic device adjusts the touch screen response distance can include: the electronic device adjusts a touch parameter of the touch screen to adjust the touch screen response distance. The value of the touch parameter affects the value of the touch screen response distance. For example, the touch parameter can be a capacitance reference value of each capacitance in the touch screen, a light transmittance of a capacitance sensing area, etc.

[0079] In an optional implementation of the present application, step 501 can be replaced by adjusting the touch screen response distance to the first distance when the actual touch screen distance changes and / or the environmental information indicates that the touch screen is in an abnormal environment. That is, the process of adjusting the touch screen response distance when the target information meets the set condition can include: adjusting the touch screen response distance to the first distance when the target information meets the set condition. The current user operation parameter of the touch screen is obtained. When the current user operation parameter meets the over-standard condition, the adjusted touch screen response distance is updated again until the current user operation parameter of the touch screen does not meet the over-standard condition.

[0080] In the embodiments of the present application, the user operation parameter of the electronic device after adjusting the touch screen response distance is obtained, so as to determine whether the adjusted touch screen response distance is appropriate by judging whether the user operation parameter meets the over-standard condition. Furthermore, when the adjusted touch screen response distance is not appropriate, the adjusted touch screen response distance is adjusted again until the adjusted touch screen response distance is appropriate. The technical solution further guarantees the accuracy of the adjustment of the touch screen response distance by adding the feedback process of determining whether the user operation parameter of the electronic device after adjusting the touch screen response distance meets the over-standard condition.

[0081] In some embodiments of the present application, the touch screen response distance adjustment method can not only be applied to adjusting the touch screen response distance of the entire display area of the touch screen, but also be applied to partitioning the touch screen response distance of the touch screen. In the case where the touch screen includes a plurality of display sub-areas, optionally, the process of step 201 of obtaining the target information related to the touch screen response distance of the touch screen can include: collecting the target information related to the touch screen response distance of each display sub-area of the touch screen. The explanation and implementation of this step can refer to the aforementioned step 201, and the embodiments of the present application will not be described in detail.

[0082] Correspondingly, the process of adjusting the touch screen response distance when the target information meets the set condition in step 202 can include: adjusting the touch screen response distance of the first display sub-area when the first target information meets the set condition. The first target information is the target information of the first display sub-area. The first display sub-area is any one of the display sub-areas.

[0083] The electronic device can determine whether the target information of each display sub-region meets the set condition. In a case where it is determined that the first target information meets the set condition, the touch response distance of the first display sub-region is adjusted. The determination of whether the target information of each display sub-region meets the set condition and the adjustment of the touch response distance of the first display sub-region in a case where it is determined that the first target information meets the set condition can refer to the description and implementation of step 202, and will not be repeated here.

[0084] It should be noted that, in a case where the electronic device adjusts the touch response distance of the first display sub-region to the target response distance, the target response distance is not only the touch response distance corresponding to the target information, but also the touch response distance corresponding to the first display sub-region. Correspondingly, the electronic device can store a plurality of adjustment data sets corresponding to the plurality of display sub-regions. Each adjustment data set includes a plurality of target information and a target response distance corresponding to each target information. Since each display sub-region has a different position in the touch screen, the touch sensitivity required by each display sub-region can be different, and the preferred value of the touch response distance corresponding to each display sub-region can be different. Therefore, the touch response distance of any display sub-region in which the target information meets the set condition is adjusted independently in units of display sub-regions, thereby improving the flexibility and accuracy of dynamic adjustment of the touch response distance of the touch screen.

[0085] In some embodiments of the present application, the plurality of display sub-regions of the touch screen can be obtained by dividing the touch screen based on a set rule. In an optional implementation, the touch response distance adjustment method can further include: dividing the display region of the touch screen into a plurality of display sub-regions according to the frequency of touch operations received on the touch screen.

[0086] Optionally, the touch screen has a plurality of initial display sub-regions. The electronic device can store a plurality of frequency ranges. The electronic device can record the frequency of touch operations received in each initial display sub-region within a set time period, and divide the initial display sub-regions in which the received touch operation frequencies belong to the same frequency range into the same display sub-region to obtain a plurality of display sub-regions.

[0087] For example, the electronic device stores two frequency ranges. One frequency range is (0, X), and the other frequency range is (X, 1), where X is an operating frequency threshold and is a positive number. The electronic device can divide a region in which the frequency of the received touch operation is greater than the operating frequency threshold from the multiple initial display sub-regions to the first display sub-region. The electronic device divides a region in which the frequency of the received touch operation is less than or equal to the operating frequency threshold from the multiple initial display sub-regions to the second display sub-region, to obtain two display sub-regions. The first display sub-region can be referred to as a high-frequency region, and the second display sub-region can be referred to as a low-frequency region.

[0088] In another alternative implementation, the touch screen response distance adjustment method can further include dividing the display region of the touch screen into multiple display sub-regions, each display sub-region having a different distance from the charging interface of the electronic device.

[0089] For example, the electronic device can divide the display region of the touch screen into a third display sub-region close to the charging interface side and a fourth display sub-region away from the charging interface side, to obtain two display sub-regions. The third display sub-region can be referred to as a susceptible region, which is susceptible to interference from the charging process due to being close to the charging interface side. The fourth display sub-region can be referred to as a non-susceptible region, which is not susceptible to interference from the charging process due to being away from the charging interface side. In this way, the multiple display sub-regions can be divided according to the degree of interference on the regions during the charging process. Therefore, the preferred value of the touch screen response distance corresponding to each display sub-region can be significantly different. Thus, by adjusting the touch screen display distance of any display sub-region in which the target information meets the set condition in the multiple display sub-regions independently in units of display sub-regions, the dynamic adjustment flexibility of the touch screen response distance of the touch screen can be improved, and the adjustment accuracy of the touch screen response distance can be more effectively improved.

[0090] In summary, the touch screen response distance adjustment method provided in the embodiments of the present application acquires target information related to the touch screen response distance of the touch screen, and adjusts the touch screen response distance when the target information meets the set condition. The target information includes at least one of the following: a user operation parameter, an actual touch screen distance, and use environment information. The target information meeting the set condition includes at least one of the following: the user operation parameter meeting an over-standard condition; the actual touch screen distance changing; and the use environment information indicating that the touch screen is in an abnormal environment. The user operation parameter includes at least one of the following: a jump point frequency parameter, a broken touch frequency parameter, and an invalid touch frequency parameter. The actual touch screen distance is the actual distance between a touch control and the touch screen when the touch control touches the touch screen. The abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen being in a charging state, the running temperature of the electronic device corresponding to the touch screen being lower than a temperature threshold, the touch screen being in a deformation state, and the surface of the touch screen having liquid. Since the value of the user operation parameter of the touch screen, the change of the actual touch screen distance of the touch screen, and the use environment of the touch screen can reflect whether the touch screen response distance needs to be adjusted, the touch screen response distance is adjusted when the user operation parameter meets the over-standard condition, the actual touch screen distance changes, and the touch screen is in an abnormal environment, so as to dynamically adjust the touch screen response distance, improve the touch screen response effect of the touch screen, improve the sensitivity of the touch screen, and improve the user touch operation experience.

[0091] The touch screen response distance adjustment method provided in the embodiments of the present application can be executed by the touch screen response distance adjustment device. The touch screen response distance adjustment device provided in the embodiments of the present application is described by taking the touch screen response distance adjustment device executing the touch screen response distance adjustment method as an example.

[0092] Please refer to Figure 6 which shows a block diagram of a touch screen response distance adjustment device provided in the embodiments of the present application. As shown in Figure 6 , the touch screen response distance adjustment device 600 includes an acquisition module 601 and an adjustment module 602.

[0093] The acquisition module 601 is configured to acquire target information related to the touch screen response distance of the touch screen. The target information includes at least one of the following: a user operation parameter, an actual touch screen distance, and use environment information.

[0094] The adjustment module 602 is configured to adjust the touch screen response distance when the target information meets the set condition. The target information meeting the set condition includes at least one of the following:

[0095] The user operation parameter meets an over-standard condition. The user operation parameter includes at least one of the following: a jump point frequency parameter, a broken touch frequency parameter, and an invalid touch frequency parameter.

[0096] The actual touch screen distance is changed, and the actual touch screen distance is an actual distance between the touch control and the touch screen when the touch control performs a touch operation on the touch screen.

[0097] The use environment information indicates that the touch screen is in an abnormal environment, and the abnormal environment at least includes one of the following: the electronic device corresponding to the touch screen is in a charging state, the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold, the touch screen is in a deformation state, and there is liquid on the surface of the touch screen.

[0098] Optionally, the touch screen includes a plurality of display sub-areas; the acquisition module 601 is further configured to collect target information related to a touch screen response distance of each display sub-area of the touch screen.

[0099] The adjustment module 602 is further configured to adjust the touch control response distance of the first display sub-area when the first target information meets a set condition, the first target information being target information of the first display sub-area, and the first display sub-area being any one of the display sub-areas.

[0100] Optionally, the touch screen response distance adjustment apparatus 600 further includes a division module.

[0101] The division module is configured to divide the display area of the touch screen into a plurality of display sub-areas according to the frequency of touch operations received on the touch screen, or divide the display area of the touch screen into a plurality of display sub-areas, and the center point of each display sub-area is different from the distance to the charging interface of the electronic device.

[0102] Optionally, the user operation parameter of the touch screen meets an over-standard condition, including:

[0103] Any one of the user operation parameters does not belong to the corresponding normal parameter range; or the touch control experience index does not belong to a normal index range, and the touch control experience index is determined based on the numerical value of the user operation parameter and the weight of the user operation parameter.

[0104] Optionally, the adjustment module 602 is further configured to:

[0105] In the case that the actual touch screen distance is changed, and / or the use environment information indicates that the touch screen is in an abnormal environment, the touch screen response distance is adjusted to the first distance:

[0106] The current user operation parameter of the touch screen is acquired.

[0107] In the case that the current user operation parameter meets the over-standard condition, the adjusted touch screen response distance is updated again until the current user operation parameter of the touch screen does not meet the over-standard condition.

[0108] In the embodiments of the present application, target information related to the touch screen response distance of the touch screen is acquired, and the touch screen response distance is adjusted when the target information meets the set condition. The target information includes at least one of the following: user operation parameters, actual touch screen distance, and use environment information. The target information meeting the set condition includes at least one of the following: the user operation parameters meet the over-standard condition; the actual touch screen distance changes; and the use environment information indicates that the touch screen is in an abnormal environment. The user operation parameters include at least one of the following: a jump point frequency parameter, a broken touch frequency parameter, and an invalid touch frequency parameter. The actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control is used to touch the touch screen. The abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen is in a charging state; the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold; the touch screen is in a deformation state; and there is liquid on the surface of the touch screen. Since the value of the user operation parameters of the touch screen, the change of the actual touch screen distance of the touch screen, and the use environment of the touch screen can reflect whether the touch screen response distance needs to be adjusted, the touch screen response distance is adjusted when the user operation parameters meet the over-standard condition, the actual touch screen distance changes, and the touch screen is in an abnormal environment, thereby dynamically adjusting the touch screen response distance, improving the touch screen response effect of the touch screen, improving the sensitivity of the touch screen, and improving the user touch operation experience.

[0109] The touch screen response distance adjustment apparatus in the embodiments of the present application can be an electronic device or a component in the electronic device, such as an integrated circuit or a chip. The electronic device can be a terminal or other devices other than the terminal. For example, the electronic device can be a mobile phone, a tablet computer, a notebook computer, a palm computer, a vehicle-mounted electronic device, a mobile Internet device (MID), an augmented reality (AR) / virtual reality (VR) device, a robot, a wearable device, an ultra-mobile personal computer (UMPC), a netbook, or a personal digital assistant (PDA), and the like. The electronic device can also be a server, a network attached storage (NAS), a personal computer (PC), a television (TV), a teller machine, or a self-service machine, and the like. The embodiments of the present application are not limited in this regard.

[0110] The touch screen response distance adjustment apparatus in the embodiments of the present applicationapplicationbe an apparatus having an operating system. The operating systemapplicationbe an Android operating system, an ios operating system, or other possible operating system, and the embodiments of the present application do not make specific limitation.

[0111] The touch screen response distance adjustment apparatus provided in the embodiments of the present applicationapplicationrealize the method embodiments Figures 1 to 7 of the present application, and the same technical effects can be achieved. Thus, the various processes realized by the method embodiments of the present application will not be repeated here.

[0112] Optionally, as shown in Figure 7 the embodiments of the present application further provide an electronic device 700, which includes a processor 701 and a memory 702, and the memory 702 has stored programs or instructions that can run on the processor 701. When the programs or instructions are executed by the processor 701, the various steps of the above touch screen response distance adjustment method embodiments are realized, and the same technical effects can be achieved. Thus, the various steps will not be repeated here.

[0113] It should be noted that the electronic device in the embodiments of the present application includes the mobile electronic device and the non-mobile electronic device described above.

[0114] Figure 8 A hardware structure schematic diagram of an electronic device for realizing the embodiments of the present application. The electronic device 800 includes but is not limited to the following components: a radio frequency unit 801, a network module 802, an audio output unit 803, an input unit 804, a sensor 805, a display unit 806, a user input unit 807, an interface unit 808, a memory 809, and a processor 810, etc.

[0115] Those skilled in the art can understand that the electronic device 800 can further include a power supply (such as a battery) for supplying power to each component, and the power supplyapplicationbe logically connected to the processor 810 through a power management system, so as to realize the functions of power management, such as charging, discharging, and power consumption management, through the power management system. Figure 8 The electronic device structure shown in the above

[0116] The processor 810applicationbe configured to acquire target information related to a touch screen response distance of a touch screen, the target information including at least one of the following: a user operation parameter, an actual touch screen distance, and use environment information; and further configured to adjust the touch screen response distance when the target information satisfies a set condition, wherein the target information satisfying the set condition includes at least one of the following:

[0117] The user operation parameter meets an over-standard condition, and the user operation parameter includes at least one of a skip point frequency parameter, a break touch frequency parameter, and an invalid touch frequency parameter.

[0118] The actual touch screen distance changes, and the actual touch screen distance is an actual distance between the touch control and the touch screen when the touch control performs a touch operation on the touch screen.

[0119] The use environment information indicates that the touch screen is in an abnormal environment, and the abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen is in a charging state, the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold, the touch screen is in a deformation state, and there is liquid on the surface of the touch screen.

[0120] In the embodiments of the present application, target information related to a touch screen response distance of a touch screen is acquired, so that the touch screen response distance is adjusted when the target information meets a set condition. The target information includes at least one of the following: user operation parameters, an actual touch screen distance, and use environment information. The target information meeting the set condition includes at least one of the following: the user operation parameters meeting an over-standard condition; the actual touch screen distance changing; and the use environment information indicating that the touch screen is in an abnormal environment. The user operation parameters include at least one of the following: a skip point frequency parameter, a break touch frequency parameter, and an invalid touch frequency parameter. The actual touch screen distance is an actual distance between a touch control and the touch screen when the touch control performs a touch operation on the touch screen. The abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen being in a charging state, the running temperature of the electronic device corresponding to the touch screen being lower than a temperature threshold, the touch screen being in a deformation state, and there being liquid on the surface of the touch screen. Since the value of the user operation parameters of the touch screen, the change of the actual touch screen distance of the touch screen, and the use environment of the touch screen can all reflect whether the touch screen response distance needs to be adjusted, the touch screen response distance is controlled to be adjusted when the user operation parameters meet the over-standard condition, the actual touch screen distance changes, and the touch screen is in the abnormal environment, so that the dynamic adjustment of the touch screen response distance is realized, the touch screen response effect of the touch screen is improved, the sensitivity of the touch screen is improved, and the user touch operation experience is improved.

[0121] Optionally, the touch screen includes a plurality of display sub-areas; and the processor 810 is further configured to: acquire target information related to a touch screen response distance of each display sub-area of the touch screen; and further configured to adjust the touch screen response distance of a first display sub-area when first target information meets a set condition, the first target information being target information of the first display sub-area, and the first display sub-area being any one of the display sub-areas.

[0122] Optionally, the processor 810 is further configured to: divide the display area of the touch screen into the plurality of display sub-areas according to the frequency of the touch operation received on the touch screen.

[0123] Optionally, the display area of the touch screen is divided into the plurality of display sub-areas, and the center point of each display sub-area is different from the distance to the charging interface of the electronic device.

[0124] Optionally, the user operation parameter satisfying the over-standard condition comprises:

[0125] Any one of the user operation parameters does not belong to the corresponding normal parameter range, or the touch experience index of the touch screen does not belong to the normal index range, and the touch experience index is determined based on the value of the user operation parameter and the weight of the user operation parameter.

[0126] Optionally, the processor 810 is further configured to:

[0127] In the case that the actual touch screen distance changes and / or the use environment information indicates that the touch screen is in an abnormal environment, the touch screen response distance is adjusted to a first distance.

[0128] Obtain the current user operation parameter of the touch screen.

[0129] In the case that the current user operation parameter satisfies the over-standard condition, the adjusted touch screen response distance is updated again until the current user operation parameter of the touch screen does not satisfy the over-standard condition.

[0130] In the embodiments of the present application, target information related to the touch screen response distance of the touch screen is acquired, and the touch screen response distance is adjusted when the target information meets the set condition. The target information includes at least one of the following: user operation parameters, actual touch screen distance, and use environment information. The target information meeting the set condition includes at least one of the following: the user operation parameters meet the over-standard condition; the actual touch screen distance changes; and the use environment information indicates that the touch screen is in an abnormal environment. The user operation parameters include at least one of the following: a jump point frequency parameter, a broken touch frequency parameter, and an invalid touch frequency parameter. The actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control is used to touch the touch screen. The abnormal environment includes at least one of the following: the electronic device corresponding to the touch screen is in a charging state, the running temperature of the electronic device corresponding to the touch screen is lower than a temperature threshold, the touch screen is in a deformation state, and there is liquid on the surface of the touch screen. Since the value of the user operation parameters of the touch screen, the change of the actual touch screen distance of the touch screen, and the use environment of the touch screen can reflect whether the touch screen response distance needs to be adjusted, when the user operation parameters meet the over-standard condition, the actual touch screen distance changes, and the touch screen is in an abnormal environment, the touch screen response distance is adjusted to dynamically adjust the touch screen response distance, improve the touch screen response effect of the touch screen, improve the sensitivity of the touch screen, and improve the user touch operation experience.

[0131] It should be understood that in the embodiments of the present application, the input unit 804 can include a graphics processing unit (GPU) 8041 and a microphone 8042. The graphics processing unit 8041 processes image data of a still picture or a video obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The display unit 806 can include a display panel 8061, which can be configured in the form of a liquid crystal display, an organic light-emitting diode, etc. The user input unit 807 includes at least one of a touch panel 8071 and other input devices 8072. The touch panel 8071 is also called a touch screen. The touch panel 8071 can include a touch detection device and a touch controller. The other input devices 8072 can include, but are not limited to, a physical keyboard, function keys (such as volume control keys, on-off keys, etc.), a trackball, a mouse, a joystick, and the like, which will not be described here.

[0132] The memory 809 can be used to store software programs and various data. The memory 809 can mainly include a first storage area storing programs or instructions and a second storage area storing data, wherein the first storage area can store an operating system, application programs or instructions required by at least one function (such as a sound playing function, an image playing function, etc.), and the like. In addition, the memory 809 can include a volatile memory or a non-volatile memory, or the memory 809 can include both a volatile memory and a non-volatile memory. The non-volatile memory can be a Read-Only Memory (ROM), a Programmable ROM (PROM), an Erasable PROM (EPROM), an Electrically EPROM (EEPROM), or a flash memory. The volatile memory can be a Random Access Memory (RAM), a Static RAM (SRAM), a Dynamic RAM (DRAM), a Synchronous DRAM (SDRAM), a Double Data Rate SDRAM (DDR SDRAM), an Enhanced SDRAM (ESDRAM), a Synch link DRAM (SLDRAM), and a Direct Rambus RAM (DRRAM). The memory 809 in the embodiments of the present application includes but is not limited to these and any other suitable types of memory.

[0133] The processor 810 can include one or more processing units; optionally, the processor 810 integrates an application processor and a modem processor, wherein the application processor mainly processes operations related to an operating system, a user interface, and an application program, and the modem processor mainly processes wireless communication signals, such as a baseband processor. It can be understood that the above-mentioned modem processor can also not be integrated into the processor 810.

[0134] The embodiments of the present application also provide a readable storage medium, the readable storage medium stores programs or instructions, the programs or instructions are executed by a processor to realize various processes of the above-mentioned touch screen response distance adjustment method embodiments, and the same technical effects can be achieved. To avoid repetition, details are not described here.

[0135] The processor is the processor in the electronic device described in the above embodiments. The readable storage medium includes a computer readable storage medium, such as a computer readable only memory (ROM), a random access memory (RAM), a magnetic disc or an optical disc, etc.

[0136] The embodiment of the present application further provides a chip, which comprises a processor and a communication interface, the communication interface is coupled with the processor, the processor is used for running programs or instructions to realize the processes of the above-mentioned touch screen response distance adjustment method embodiment, and the same technical effects can be achieved. To avoid repetition, details are not described herein.

[0137] It should be understood that the chip mentioned in the embodiment of the present application can also be referred to as a system level chip, a system chip, a chip system or a system on chip, etc.

[0138] The embodiment of the present application provides a computer program product, which is stored in a storage medium, and is executed by at least one processor to realize the processes of the above-mentioned touch screen response distance adjustment method embodiment, and the same technical effects can be achieved. To avoid repetition, details are not described herein.

[0139] It should be noted that in this document, the term "comprising" or "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the element defined by the statement "comprising a" does not exclude the presence of additional identical elements in the process, method, article or device including the element. In addition, it should be pointed out that the scope of the method and device in the embodiment of the present application is not limited to the order of performing the functions as shown or discussed, but can also include performing the functions in a substantially simultaneous manner or in a reverse order, for example, the described method can be performed in an order different from the described order, and various steps can also be added, omitted or combined. In addition, the features described with reference to some examples can be combined in other examples.

[0140] Through the above description of the embodiments, those skilled in the art can clearly understand that the above-mentioned example methods can be realized by means of software and a necessary general hardware platform, and of course, can also be realized by hardware, but in many cases, the former is a better embodiment. Based on such understanding, the technical solutions of the present application can be embodied in the form of a computer software product in essence or in the form of a part that contributes to the prior art, which is stored in a storage medium (such as a ROM / RAM, a magnetic disk, or an optical disk) and includes a plurality of instructions for causing a terminal (which can be a mobile phone, a computer, a server, or a network device, etc.) to execute the methods described in the various embodiments of the present application.

[0141] The embodiments of the present application are described above in combination with the drawings, but the present application is not limited to the above-mentioned specific embodiments, and the above-mentioned specific embodiments are only illustrative and not restrictive. Those skilled in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the scope protected by the claims.

Claims

1. A method for adjusting the touch screen response distance, characterized in that, The method comprises: obtaining target information related to a touch screen response distance of a touch screen, the target information comprising at least one of: a user operation parameter, an actual touch screen distance, and use environment information; adjusting the touch screen response distance when the target information meets a set condition, wherein the target information meeting the set condition comprises at least one of: the user operation parameter meeting an out-of-standard condition, the user operation parameter comprising at least one of: a jump point frequency parameter, a broken touch frequency parameter, and an invalid touch frequency parameter; wherein the jump point frequency parameter is the frequency of jump points in all touch operations received by the touch screen within a set time period; the broken touch frequency parameter is the frequency of broken touches in all touch operations received by the touch screen within a set time period; and the invalid touch frequency parameter is the frequency of invalid touches in all touch operations received by the touch screen within a set time period; the actual touch screen distance changing, the actual touch screen distance being the actual distance between a touch control and the touch screen when the touch control performs a touch operation on the touch screen; wherein the actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control performs a touch operation on the touch screen; the use environment information indicating that the touch screen is in an abnormal environment, the abnormal environment comprising at least one of: the electronic device corresponding to the touch screen being in a charging state, the operating temperature of the electronic device corresponding to the touch screen being lower than a temperature threshold, the touch screen being in a deformed state, and the surface of the touch screen having liquid.

2. The method of claim 1, wherein, The touch screen comprises a plurality of display sub-regions; and the target information related to the touch screen response distance of the touch screen is obtained by collecting target information related to the touch screen response distance of each display sub-region of the touch screen. The touch screen response distance is adjusted when the target information meets the set condition, comprising: adjusting the touch control response distance of a first display sub-region when first target information meets the set condition, the first target information being the target information of the first display sub-region, and the first display sub-region being any one of the display sub-regions.

3. The method of claim 2, wherein, The method further comprises: dividing the display region of the touch screen into the plurality of display sub-regions according to the frequency of touch operations received on the touch screen; or dividing the display region of the touch screen into the plurality of display sub-regions, the center point of each display sub-region being different from the distance to the charging interface of the electronic device.

4. The method of claim 1, wherein, The user operation parameter meeting the out-of-standard condition comprises: any one of the user operation parameters not belonging to a normal parameter range corresponding to the user operation parameter; or the touch control experience index not belonging to a normal index range, the touch control experience index being determined based on the values of the user operation parameters and the weights of the user operation parameters.

5. The method of claim 1, wherein, The touch screen response distance is adjusted, comprising: adjusting the touch screen response distance to a first distance when the actual touch screen distance changes and / or the use environment information indicates that the touch screen is in an abnormal environment; obtaining the current user operation parameter of the touch screen; If the current user operation parameters meet the exceeding condition, the adjusted touch screen response distance is updated again until the current user operation parameters of the touch screen no longer meet the exceeding condition.

6. A touchscreen response distance adjustment device, characterized in that, The device includes: The acquisition module is used to acquire target information related to the touch screen response distance of the touch screen, and the target information includes at least one of the following: user operation parameters, actual touch screen distance, and usage environment information; An adjustment module is used to adjust the touchscreen response distance when the target information meets set conditions, wherein the target information meeting the set conditions includes at least one of the following: The user operation parameters meet the conditions for exceeding the limit. The user operation parameters include at least one of the following: jump point frequency parameter, touch failure frequency parameter, and invalid touch frequency parameter; wherein, the jump point frequency parameter is the frequency of jump points among all touch operations received by the touch screen within a set time period; the touch failure frequency parameter is the frequency of touch failure among all touch operations received by the touch screen within a set time period; and the invalid touch frequency parameter refers to the frequency of invalid touches among all touch operations received by the touch screen within a set time period. The actual touch screen distance changes, and the actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control performs a touch operation on the touch screen; wherein, the actual touch screen distance is the actual distance between the touch control and the touch screen when the touch control performs a touch operation on the touch screen; The usage environment information indicates that the touch screen is in an abnormal environment, which includes at least one of the following: the electronic device corresponding to the touch screen is in a charging state, the operating temperature of the electronic device corresponding to the touch screen is lower than the temperature threshold, the touch screen is in a deformed state, or there is liquid on the surface of the touch screen.

7. The apparatus of claim 6, wherein, The touch screen includes multiple display sub-areas; the acquisition module is also used to collect target information related to the touch screen response distance of each of the display sub-areas in the touch screen; The adjustment module is further configured to adjust the touch response distance of the first display sub-region when the first target information meets the set conditions, wherein the first target information is the target information of the first display sub-region and the first display sub-region is any display sub-region.

8. The apparatus of claim 7, wherein, The device further includes: A partitioning module is used to divide the display area of ​​the touch screen into the plurality of display sub-regions according to the frequency of touch operations received on the touch screen; Alternatively, the display area of ​​the touch screen can be divided into multiple display sub-areas, with each sub-area having a different center point distance from the charging port of the electronic device.

9. The apparatus of claim 6, wherein, The user operation parameters of the touch screen meet the conditions for exceeding the limit, including: There is one user operation parameter that does not belong to its corresponding normal parameter range. Alternatively, the touch experience index of the touch screen may not fall within the normal range. The touch experience index is calculated and determined based on the values ​​of the user operation parameters and their weights.

10. The apparatus of claim 6, wherein, The adjustment module is also used for: adjust the touch screen response distance to a first distance in the case that the actual touch screen distance changes, and / or the use environment information indicates that the touch screen is in an abnormal environment: obtain a current user operation parameter of the touch screen; in the case that the current user operation parameter meets the over-standard condition, update the adjusted touch screen response distance again until the current user operation parameter of the touch screen does not meet the over-standard condition.

11. An electronic device, comprising: a processor and a memory, the memory storing programs or instructions executable on the processor, the programs or instructions being executed by the processor to implement the steps of the touch screen response distance adjustment method according to any one of claims 1 to 5.

Citation Information

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