CN111327746B - Method and device for determining pressure abnormity of mobile terminal - Google Patents

Method and device for determining pressure abnormity of mobile terminal Download PDF

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Publication number
CN111327746B
CN111327746B CN202010072744.XA CN202010072744A CN111327746B CN 111327746 B CN111327746 B CN 111327746B CN 202010072744 A CN202010072744 A CN 202010072744A CN 111327746 B CN111327746 B CN 111327746B
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target
pressure
detected
mobile terminal
threshold
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CN111327746A (en
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赵朝辉
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Shanghai Wanwu Xinsheng Environmental Technology Group Co
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Shanghai Wanwu Xinsheng Environmental Technology Group Co
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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/24Arrangements for testing

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  • Signal Processing (AREA)
  • Telephone Function (AREA)

Abstract

The method comprises the steps of determining a pressure threshold and a travel threshold corresponding to a target to be detected of the mobile terminal; acquiring travel information of the position of a target point when the target to be detected generates pressure and a pressure value corresponding to the target point; and comparing the stroke information and the pressure value of the position of the target point according to the pressure threshold and the stroke threshold to obtain a comparison result, and determining whether pressure abnormity occurs according to the comparison result. Therefore, the abnormal pressure can be detected in time when the mobile terminal is operated, and the detection of the target to be detected of the mobile terminal is automatically completed.

Description

Method and device for determining pressure abnormity of mobile terminal
Technical Field
The present application relates to the field of device detection, and in particular, to a method and a device for determining a pressure anomaly of a mobile terminal.
Background
With the development of social requirements, mobile terminals such as mobile phones are more and more commonly used, the quality requirements of the mobile terminals are higher and higher, the mobile terminals need to be tested before leaving factories or when the mobile terminals are put into use for the second time, and sometimes the mobile terminals are damaged due to improper plugging or touch control in the testing process, such as an interface is damaged by plugging, a screen is damaged by pressing, or testing data cannot be obtained due to too small force.
Disclosure of Invention
An object of the present application is to provide a method and an apparatus for determining a pressure anomaly of a mobile terminal, which solve the problem in the prior art that the pressure anomaly cannot be detected in time when the mobile terminal is operated, and a certain harm is caused to the mobile terminal.
According to an aspect of the present application, there is provided a method for determining a pressure abnormality of a mobile terminal, the method including:
determining a pressure threshold and a travel threshold corresponding to a target to be detected of the mobile terminal;
acquiring travel information of the position of a target point when the target to be detected generates pressure and a pressure value corresponding to the target point;
and comparing the stroke information and the pressure value of the position of the target point according to the pressure threshold and the stroke threshold to obtain a comparison result, and determining whether pressure abnormity occurs according to the comparison result.
Further, the method comprises:
and installing a pressure sensor under the target to be detected of the mobile terminal, and acquiring the pressure value of the pressure sensor in real time.
Further, the target to be detected includes: USB interface, touch-control target.
Further, when the target to be detected is the USB interface, acquiring the travel information of the position of the target point when generating pressure on the target to be detected and the pressure value corresponding to the target point includes:
acquiring image information related to a USB interface of the mobile terminal, and positioning a physical coordinate of the USB interface under a mechanical coordinate system of the mobile terminal according to the image information of the USB interface;
and automatically inserting the plug wire into the USB interface according to the physical coordinate, and acquiring the pressure value and the stroke information of the current insertion depth to the USB interface in real time.
Further, when the target to be detected is the touch target, acquiring the travel information of the position of the target point when the pressure is generated on the target to be detected and the pressure value corresponding to the target point, including:
acquiring a target icon on a screen of the mobile terminal, judging whether the target icon is called by operating the touch target, and if so, acquiring a pressure value and stroke information when the touch target is touched.
Further, determining a pressure threshold and a travel threshold corresponding to the target to be detected of the mobile terminal includes:
acquiring a historical pressure value when a target to be detected of the mobile terminal is operated, removing an abnormal pressure value in the historical pressure value, and determining a pressure threshold value according to the average value of the residual historical pressure values;
and determining a travel threshold according to historical travel information when the target to be detected of the mobile terminal is operated.
Further, after determining whether a pressure abnormality occurs according to the comparison result, the method includes:
when the pressure is not abnormal, continuing to perform the next execution operation of operating the target to be detected;
and when the pressure is abnormal, determining the position where the abnormality occurs, and resetting the target to be detected.
According to another aspect of the present application, there is also provided an apparatus for determination of a pressure anomaly of a mobile terminal, the apparatus including:
one or more processors; and
a memory storing computer readable instructions that, when executed, cause the processor to perform the operations of the method as previously described.
According to yet another aspect of the present application, there is also provided a computer readable medium having computer readable instructions stored thereon, the computer readable instructions being executable by a processor to implement the method as described above.
Compared with the prior art, the pressure threshold value and the travel threshold value corresponding to the target to be detected of the mobile terminal are determined; acquiring travel information of the position of a target point when the target to be detected generates pressure and a pressure value corresponding to the target point; and comparing the stroke information and the pressure value of the position of the target point according to the pressure threshold and the stroke threshold to obtain a comparison result, and determining whether pressure abnormity occurs according to the comparison result. Therefore, the abnormal pressure can be detected in time when the mobile terminal is operated, and the detection of the target to be detected of the mobile terminal is automatically completed.
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Other features, objects and advantages of the present application will become more apparent upon reading of the following detailed description of non-limiting embodiments thereof, made with reference to the accompanying drawings in which:
fig. 1 is a flowchart illustrating a method for determining a pressure anomaly of a mobile terminal according to an aspect of the present application.
The same or similar reference numbers in the drawings identify the same or similar elements.
Detailed Description
The present application is described in further detail below with reference to the attached figures.
In a typical configuration of the present application, the terminal, the device serving the network, and the trusted party each include one or more processors (e.g., Central Processing Units (CPUs)), input/output interfaces, network interfaces, and memory.
The Memory may include volatile Memory in a computer readable medium, Random Access Memory (RAM), and/or nonvolatile Memory such as Read Only Memory (ROM) or flash Memory (flash RAM). Memory is an example of a computer-readable medium.
Computer-readable media, including both non-transitory and non-transitory, removable and non-removable media, may implement information storage by any method or technology. The information may be computer readable instructions, data structures, modules of a program, or other data. Examples of computer storage media include, but are not limited to, Phase-Change RAM (PRAM), Static Random Access Memory (SRAM), Dynamic Random Access Memory (DRAM), other types of Random Access Memory (RAM), Read Only Memory (ROM), Electrically Erasable Programmable Read-Only Memory (EEPROM), flash Memory or other Memory technology, Compact Disc Read-Only Memory (CD-ROM), Digital Versatile Disc (DVD) or other optical storage, magnetic cassette tape, magnetic tape storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information that can be accessed by a computing device. As defined herein, computer readable media does not include non-transitory computer readable media (transient media), such as modulated data signals and carrier waves.
Fig. 1 is a flowchart illustrating a method for determining a pressure anomaly of a mobile terminal according to an aspect of the present application, where the method includes: step S11 to step S13,
in step S11, determining a pressure threshold and a travel threshold corresponding to a target to be detected of the mobile terminal; here, the mobile terminal includes, but is not limited to, any mobile electronic product capable of performing a man-machine interaction with a user through a touch panel, such as a smart phone, a Personal Digital Assistant (PDA), and the like, and the mobile electronic product may employ any operating system, such as an android (android) operating system, an apple (iOS) operating system, and the like. When a target to be detected of the mobile terminal is detected on the mobile terminal, a detection item needing to be detected is detected, wherein the target to be detected comprises: USB interface, touch-control target. If the performance of the USB interface is detected, the USB interface is plugged, and whether the pressure caused by plugging is proper or not is judged; the touch target may be a main control key (home key), a multi-touch (3DTouch), or the like, or may be a touch-enabled operation object that can call out a certain icon on the mobile terminal through the touch target. When the targets to be detected of the mobile terminal are different, the corresponding pressure threshold and the corresponding stroke threshold are also different, the pressure threshold is a normal pressure range when the targets to be detected are operated, and the stroke threshold is a stroke range when the targets to be detected are operated. Firstly, a pressure threshold value and a travel threshold value of a target to be detected with normal pressure are determined.
Next, in step S12, obtaining travel information of a position where a target point is located when pressure is generated on the target to be detected and a pressure value corresponding to the target point; the target point is a position point when the target to be detected is operated, pressure generated when the target to be detected is operated and stroke information corresponding to the position of the generated pressure are acquired in real time, and comprehensive judgment is carried out according to the range of the force and the range of the stroke; that is, in step S13, the travel information and the pressure value of the position of the target point are compared with each other according to the pressure threshold and the travel threshold to obtain a comparison result, and whether a pressure abnormality occurs is determined according to the comparison result. And comprehensively judging whether pressure abnormity occurs in the target point and whether the target point is correctly operated to be detected according to the determined pressure threshold and the travel threshold. The travel range is the distance between the position where the action is started and the point quality inspection where the action is started to touch plus the movable distance after the touch, the movement of the target point is driven by a servo motor, and the servo motor can accurately record position information.
In an embodiment of the present application, the method includes: and installing a pressure sensor under the target to be detected of the mobile terminal, and acquiring the pressure value of the pressure sensor in real time. Here, at mobile terminal's the target of waiting to detect under installation pressure sensor, if install pressure sensor behind the USB interface, all set up whole USB interface on pressure sensor, read the pressure that touches USB interface production in real time, gather the pressure that the target received through pressure sensor in real time, judge whether external force treats and causes the exorbitant, prevent to crash the interface when the USB plug.
In an embodiment of the present application, when the target to be detected is the USB interface, in step S12, image information of the USB interface of the mobile terminal is obtained, and a physical coordinate of the USB interface in a mechanical coordinate system of the mobile terminal is located according to the image information of the USB interface; and automatically inserting the plug wire into the USB interface according to the physical coordinate, and acquiring the pressure value and the stroke information of the current insertion depth to the USB interface in real time. Here, the stroke information is a stroke range of USB insertion, that is, a distance from an initial position where USB insertion is started to an outermost side of the USB head, plus a distance over which USB can be inserted, and for example, a stroke range is 10.5cm to 10.6cm when the starting position is 10cm from the USB interface and USB can be inserted by 0.5cm to 0.6 cm. When the USB interface is detected, a USB interface plug wire is required to be inserted into the USB interface, the pressure of the plug wire entering the USB interface is collected in real time, when the plug wire is automatically inserted into the USB interface, image information related to the USB interface of the mobile terminal can be obtained firstly, coordinate information of the USB interface in an image is obtained according to the obtained image information, coordinate conversion is carried out, the image information is converted into physical coordinates under a physical coordinate system of the mobile terminal, the position of the USB interface of the mobile terminal is located according to the obtained physical coordinates, the plug wire is automatically connected into the USB interface, the pressure of the plug wire entering the USB interface and stroke information corresponding to the entering depth are read in real time through a pressure sensor placed under the USB interface, and the pressure value when the position of the plug wire entering the USB interface is h and the controllable stroke information at the h can be obtained.
In an embodiment of the application, when the target to be detected is the touch target, in step S12, a target icon on a screen of the mobile terminal is obtained, whether the target icon is called by operating the touch target is determined, and if yes, a pressure value when the touch target is touched and stroke information when the touch target is touched are obtained. Here, when performing a touch operation on the touch screen of the mobile terminal, for example, when using a stylus to automatically detect the performance of the touch screen, the touch target may be a touch operation on the touch screen, or may be a main control key, which is used to call a control key of an icon on the touch screen. After the mobile terminal is fixed at a certain position, a touch target is touched and operated, whether a trigger function is normal or not is judged, namely whether the trigger function is called by the operation on the touch target or not is obtained, the click pressure of touch during the operation on the touch target and the stroke information generating the click pressure are obtained, the position of the point is not right and the pressure is not right, the other function is prevented from being triggered when the pressure of the point is not right, if the time and the pressure for clicking a certain icon are within a certain threshold range, an application program corresponding to the icon is opened, and if the time and the pressure for clicking the certain icon are within the certain threshold range, a user is reminded of whether the icon is deleted or not; and the touch screen can be prevented from being crushed due to excessive pressure. And judging whether the position of the touch target is in error or not according to the acquired travel information. The stroke information when the touch target is detected is the sum of the distance from the lowest side of the stylus to the screen of the mobile terminal and the distance of the stylus retracting when the touch target is triggered; for example, the stroke information (stroke range) at the position when the 3D Touch is detected is the distance from the lowest side of the stylus to the screen of the mobile phone, plus the distance that the stylus retracts when the 3D Touch is triggered. When detecting 3D Touch, a pressure value of 500g is required, and when performing this action, the further downward movement is stopped when the pressure reaches 500g, i.e. there is a different corresponding pressure value for each operation.
In an embodiment of the application, in step S11, historical pressure values when an object to be detected of the mobile terminal is operated are obtained, abnormal pressure values in the historical pressure values are removed, and a pressure threshold value is determined according to a mean value of remaining historical pressure values; and determining a travel threshold according to historical travel information when the target to be detected of the mobile terminal is operated. The method comprises the steps of obtaining historical operation information of a target to be detected of the mobile terminal, obtaining a pressure value when the target to be detected is operated, removing abnormal points from the obtained historical pressure value, determining a pressure threshold value by using an average value of the pressure values after the abnormal points are removed, obtaining travel information when the target to be detected is operated, removing the abnormal points according to a plurality of pieces of obtained historical travel information, determining a normal travel range, and obtaining the travel threshold value.
In an embodiment of the present application, after determining whether a pressure abnormality occurs according to the comparison result, when the pressure abnormality does not occur, a next execution operation for operating the target to be detected may be continued; and when the pressure is abnormal, determining the position where the abnormality occurs, and resetting the target to be detected. And if not, the interface is continuously inserted, otherwise, the interface is immediately withdrawn for resetting, and the locking error is carried out, and the position and the reason of the abnormal locking error are determined.
In addition, the embodiment of the present application also provides a computer readable medium, on which computer readable instructions are stored, and the computer readable instructions can be executed by a processor to implement the foregoing method for determining a pressure anomaly of a mobile terminal.
In an embodiment of the present application, there is also provided an apparatus for determining a pressure anomaly of a mobile terminal, the apparatus including:
one or more processors; and
a memory storing computer readable instructions that, when executed, cause the processor to perform the operations of the method as previously described.
For example, the computer readable instructions, when executed, cause the one or more processors to:
determining a pressure threshold and a travel threshold corresponding to a target to be detected of the mobile terminal;
acquiring travel information of the position of a target point when the target to be detected generates pressure and a pressure value corresponding to the target point;
and comparing the stroke information and the pressure value of the position of the target point according to the pressure threshold and the stroke threshold to obtain a comparison result, and determining whether pressure abnormity occurs according to the comparison result.
It will be apparent to those skilled in the art that various changes and modifications may be made in the present application without departing from the spirit and scope of the application. Thus, if such modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application is intended to include such modifications and variations as well.
It should be noted that the present application may be implemented in software and/or a combination of software and hardware, for example, implemented using Application Specific Integrated Circuits (ASICs), general purpose computers or any other similar hardware devices. In one embodiment, the software programs of the present application may be executed by a processor to implement the steps or functions described above. Likewise, the software programs (including associated data structures) of the present application may be stored in a computer readable recording medium, such as RAM memory, magnetic or optical drive or diskette and the like. Additionally, some of the steps or functions of the present application may be implemented in hardware, for example, as circuitry that cooperates with the processor to perform various steps or functions.
In addition, some of the present application may be implemented as a computer program product, such as computer program instructions, which when executed by a computer, may invoke or provide methods and/or techniques in accordance with the present application through the operation of the computer. Program instructions which invoke the methods of the present application may be stored on a fixed or removable recording medium and/or transmitted via a data stream on a broadcast or other signal-bearing medium and/or stored within a working memory of a computer device operating in accordance with the program instructions. An embodiment according to the present application comprises an apparatus comprising a memory for storing computer program instructions and a processor for executing the program instructions, wherein the computer program instructions, when executed by the processor, trigger the apparatus to perform a method and/or a solution according to the aforementioned embodiments of the present application.
It will be evident to those skilled in the art that the present application is not limited to the details of the foregoing illustrative embodiments, and that the present application may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned. Furthermore, it is obvious that the word "comprising" does not exclude other elements or steps, and the singular does not exclude the plural. The terms first, second, etc. are used to denote names, but not any particular order.

Claims (7)

1. A method for determining a pressure anomaly of a mobile terminal, the method comprising:
determining a pressure threshold and a travel threshold corresponding to a target to be detected of the mobile terminal, wherein the target to be detected comprises a USB interface and a touch target;
acquiring travel information of the position of a target point when pressure is generated on the target to be detected and a pressure value corresponding to the target point, wherein the travel information comprises the distance between the initial position for starting USB insertion and the outermost side of a USB interface and the distance in which the USB can be inserted, or the distance between the lowermost side of a touch pen for detecting the touch target and a mobile terminal screen and the distance in which the touch pen retracts when the touch target is triggered;
comparing the travel information and the pressure value of the position of the target point according to the pressure threshold and the travel threshold to obtain a comparison result, and determining whether pressure abnormity occurs according to the comparison result;
when the target to be detected is the touch target, obtaining the travel information of the position of the target point when the pressure is generated on the target to be detected and the pressure value corresponding to the target point, including:
acquiring a target icon on a screen of the mobile terminal, judging whether the target icon is called by operating the touch target, and if so, acquiring a pressure value and stroke information when the touch target is touched.
2. The method according to claim 1, characterized in that it comprises:
and installing a pressure sensor under the target to be detected of the mobile terminal, and acquiring the pressure value of the pressure sensor in real time.
3. The method according to claim 1, wherein when the target to be detected is the USB interface, acquiring the travel information of the position of the target point when the pressure is generated on the target to be detected and the pressure value corresponding to the target point comprises:
acquiring image information related to a USB interface of the mobile terminal, and positioning a physical coordinate of the USB interface under a mechanical coordinate system of the mobile terminal according to the image information of the USB interface;
and automatically inserting the plug wire into the USB interface according to the physical coordinate, and acquiring the pressure value and the stroke information of the current insertion depth to the USB interface in real time.
4. The method according to claim 1, wherein determining the pressure threshold and the travel threshold corresponding to the target to be detected of the mobile terminal comprises:
acquiring a historical pressure value when a target to be detected of the mobile terminal is operated, removing an abnormal pressure value in the historical pressure value, and determining a pressure threshold value according to the average value of the residual historical pressure values;
and determining a travel threshold according to historical travel information when the target to be detected of the mobile terminal is operated.
5. The method of claim 1, wherein determining whether a pressure anomaly has occurred based on the comparison comprises:
when the pressure is not abnormal, continuing to perform the next execution operation of operating the target to be detected;
and when the pressure is abnormal, determining the position where the abnormality occurs, and resetting the target to be detected.
6. An apparatus for determination of a pressure anomaly of a mobile terminal, characterized in that the apparatus comprises:
one or more processors; and
memory storing computer readable instructions that, when executed, cause the processor to perform the operations of the method of any of claims 1 to 5.
7. A computer readable medium having computer readable instructions stored thereon which are executable by a processor to implement the method of any one of claims 1 to 5.
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