A central control screen automation testing device and testing method

By combining a host computer, controller, ultraviolet projector, and polymer gel, the problems of large equipment size, high cost, and operating system limitations of the central control screen automated testing equipment are solved, realizing a high-precision, automated, and flexible testing method.

CN119269024BActive Publication Date: 2026-01-02CHERY AUTOMOBILE CO LTD
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Patent Information

Application Number
CN202411351836.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-09-26
Publication Date
2026-01-02
Estimated Expiration
2044-09-26

AI Technical Summary

Technical Problem

Existing automated testing equipment for central control screens suffers from problems such as large equipment size, high cost, operating system limitations, high learning curve, and inability to perform performance testing.

Method used

By combining a host computer, controller, ultraviolet projector, deformer, and touch screen material, and utilizing the expansion and contraction properties of polymer gel, the click position is precisely adjusted by ultraviolet laser to achieve high-precision automated testing.

Benefits of technology

It achieves high-precision clicks, automated testing, high repeatability, high flexibility, high adaptability, and is not limited by the operating system. It has high testing efficiency and is suitable for complex environments.

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Abstract

The application belongs to the technical field of automation testing, and provides a central control screen automation testing device and a testing method, the device comprises an upper computer, a controller, an ultraviolet projector, a transformer and a touch screen material; the upper computer is used for compiling an automation testing program and performing information interaction with the controller; the controller is used for controlling the ultraviolet projector and the reflector to adjust the irradiation position of the ultraviolet rays; the ultraviolet projector is used for projecting ultraviolet rays to the transformer; the deformation grid is filled with a high molecular gel in contact with the touch screen material; the touch screen material is elastic and is arranged at the bottom of the deformation grid of the transformer and is used for clicking the central control screen. The application realizes high-precision, automatic and repeatable touch control central control screen operation by precisely controlling the ultraviolet laser and the expansion characteristics of the high molecular gel.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of automation testing, and particularly relates to a central control screen automation testing device and method based on a high polymer gel. BACKGROUND

[0002] Currently, central control screen automation testing devices mainly include a multi-degree-of-freedom manipulator and a test script instruction issuing mode. The multi-degree-of-freedom manipulator mode simulates user clicking on the central control screen through a multi-degree-of-freedom manipulator, and an upper computer controls the multi-degree-of-freedom manipulator to perform central control screen software function automation testing. This mode is suitable for high-precision touch and complex gesture operation testing scenarios, but has the disadvantages of large device size, inconvenient arrangement and high cost. The test script instruction issuing mode virtually clicks on the central control screen through issuing ADB instructions to perform software function automation testing, and is suitable for flexible and fast testing scenarios, but has the disadvantages of being limited by the operating system, having a high threshold and being unable to be used for performance testing. SUMMARY

[0003] To solve the above problems, the application provides a central control screen automation testing device and method.

[0004] To achieve the above purpose, the application adopts the following technical solutions:

[0005] A central control screen automation testing device, characterized in that,

[0006] The device comprises an upper computer, a controller, an ultraviolet projector, a transformer and a touch screen material.

[0007] The upper computer is used to compile an automation testing program and interact with the controller.

[0008] The controller is used to control the ultraviolet projector and the reflector to adjust the irradiation position of the ultraviolet rays.

[0009] The ultraviolet projector is used to project ultraviolet rays to the transformer.

[0010] The transformer is filled with high polymer gel in contact with the touch screen material.

[0011] The touch screen material has elasticity and is arranged at the bottom of the deformation grid of the transformer and is used to click on the central control screen.

[0012] Further, the touch screen material and the transformer are located above the central control screen, and a small gap is left between the touch screen material and the central control screen.

[0013] Further, the deformation grids are densely arranged on the transformer.

[0014] Further, the high polymer gel is a colorless triphenylmethane derivative.

[0015] Further, the high polymer gel is disposed between the transparent substance and the touch screen material.

[0016] Further, the device further comprises a camera for shooting the position of the deformer and the irradiation position of the ultraviolet rays.

[0017] Further, the device further comprises a reflector for reflecting the ultraviolet rays and assisting in adjusting the irradiation position of the ultraviolet rays on the deformer.

[0018] A high polymer gel-based central control screen automatic testing method, characterized in that the method comprises:

[0019] The deformer and the touch screen material are installed above the central control screen, wherein a small gap is left between the central control screen and the touch screen material;

[0020] The host computer adjusts the ultraviolet ray projector through the controller to emit ultraviolet rays to irradiate on the deformer;

[0021] The deformer expands through the internal high polymer gel to push the touch screen material to extrude on the central control screen;

[0022] The host computer turns off the ultraviolet ray projector through the controller, and the high polymer gel shrinks to make the touch screen material shrink away from the central control screen;

[0023] The above contents are cycled to irradiate on all deformation grids of the deformer to complete the automatic testing.

[0024] Further, the camera shoots the relative position image of the deformer and the ultraviolet rays and transmits it to the controller and the host computer;

[0025] The host computer adjusts the projection angle of the ultraviolet ray projector and the reflection angle of the reflector through the controller according to the image to make the ultraviolet rays irradiate on the deformation grid of the deformer.

[0026] Further, the controller controls the ultraviolet ray projector and the reflector individually or synchronously.

[0027] Compared with the prior art, the present application has the following advantages:

[0028] 1. High-precision clicking: by controlling the ultraviolet ray projector and the reflector, the laser irradiation position is accurately adjusted to realize high-precision clicking operation.

[0029] 2. Automatic testing: by continuously setting the relative position of the deformation grid and the ultraviolet laser, the automatic testing sequence is realized to frequently touch and click on a certain position of the central control screen or repeatedly click on multiple places, thereby improving the testing efficiency.

[0030] 3. Repeatability: the expansion and recovery process of the high molecular gel is reversible, can be repeatedly used, and ensures the consistency and reliability of the test.

[0031] 4. Flexibility: the whole device can be used separately, which is convenient for flexible arrangement and installation in the space with obstacles, and improves the flexibility of the test.

[0032] 5. Adaptability: the device is not limited by the operation system of the central control screen software, and the operation is simple, the threshold is low, and the test adaptability is stronger.

[0033] Other features and advantages of the present application will be set forth in the following description, and in part will become apparent from the description, or can be learned by practice of the present application. The objects and other advantages of the present application can be achieved and obtained by the structure indicated in the specification, claims and drawings. BRIEF DESCRIPTION OF DRAWINGS

[0034] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor on the basis of these drawings.

[0035] Figure 1 The structural principle schematic diagram of a central control screen automatic test device in an embodiment of the present application is shown;

[0036] Figure 2 The front view structural schematic diagram of a deformer in the present application is shown;

[0037] Figure 3 The side view structural schematic diagram of a deformer in the present application is shown;

[0038] Figure 4 The structural schematic diagram of a deformation grid in the present application is shown;

[0039] Figure 5 The structural principle schematic diagram of a central control screen automatic test device in another embodiment of the present application is shown;

[0040] Figure 6 is Figure 5 The application scene schematic diagram of a central control screen automatic test device is shown.

[0041] In the figure: 1. deformer, 2. deformation grid, 3. transparent substance, 4. high molecular gel. DETAILED DESCRIPTION

[0042] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0043] Example 1

[0044] Figure 1 A schematic diagram illustrating the structural principle of an automated testing device for a central control screen according to Embodiment 1 of the present invention is shown, as follows: Figure 1 As shown, an automated testing device for a central control screen according to the present invention includes a host computer, a controller, an ultraviolet projector, a deformer, and a touch screen material;

[0045] The host computer is used to develop automated test programs and interact with the controller, sending instructions to the controller based on feedback from the test programs or the controller.

[0046] The controller, according to the instructions from the host computer, controls the ultraviolet projector and reflector to adjust the position of ultraviolet irradiation.

[0047] Ultraviolet projectors, preferably ultraviolet lasers, are used to project ultraviolet light onto the deformer.

[0048] like Figures 2 to 4 As shown, deformable grids 2 are densely arranged on deformer 1. The upper part of the deformable grid 2 is a transparent material 3, and the lower part is a polymer gel 4. The transparent material 3 can be transparent glass or air, and the polymer gel 4 is a colorless triphenylmethane derivative.

[0049] The touchscreen material is elastic and is located at the bottom of the deformable grid of the deformer for clicking the central control screen. Specifically: the polymer gel 4 is placed between the transparent material 3 and the touchscreen material, with the touchscreen material and the deformer located above the central control screen, and a small gap is left between the touchscreen material and the central control screen. Under ultraviolet laser irradiation, the polymer gel 4 expands and protrudes downwards, pushing the touchscreen material through the gap and pressing it onto the central control screen.

[0050] As a preferred embodiment, the testing device in this example also includes a camera for capturing the location of ultraviolet radiation, which is then transmitted to a host computer via a controller. The host computer, based on the radiation location, adjusts the projection angle of the ultraviolet projector via the controller, ensuring that the ultraviolet radiation illuminates the deformable grid of the deformer.

[0051] Based on the automatic testing device of Embodiment 1 above, this embodiment of the invention also provides an automated testing method for a central control screen based on polymer gel, the method comprising:

[0052] The deformer and touch screen material are installed above the central control screen, with a small gap between the central control screen and the touch screen material;

[0053] The host computer sends instructions to the controller, which receives the instructions and adjusts the ultraviolet projector to emit ultraviolet laser light that shines on the deformer; the camera captures an image of the relative position of the deformer and the ultraviolet laser light and transmits it to the controller and the host computer.

[0054] Based on the image, the host computer adjusts the projection angle of the ultraviolet projector through the controller, so that the ultraviolet laser irradiates the deformation grid of the deformer; the deformer expands through the internal polymer gel, pushing the touch screen material to be squeezed onto the central control screen;

[0055] The host computer shuts down the ultraviolet projector via the controller, causing the polymer gel to shrink rapidly and return to its initial shape, thus causing the touch screen material to shrink away from the central control screen.

[0056] Repeat the above steps to illuminate all the deformation cells of the deformer, completing the automated test.

[0057] Example 2

[0058] like Figure 5 and Figure 6 As shown, this device enables automated testing of the central control screen within a space containing obstacles.

[0059] When using the automatic testing device of the aforementioned embodiment 1, if the central control screen is in a space with obstacles, due to the small working space, it is necessary to use a reflector to reflect ultraviolet rays and assist in adjusting the position of ultraviolet rays irradiating on the deformer.

[0060] As a preferred implementation, the testing device in this second embodiment also includes a camera. The camera is placed near the central control screen to capture an image of the relative position of the deformer and the ultraviolet light, which is then transmitted to the host computer via the controller. Based on the image, the host computer adjusts the projection angle of the ultraviolet projector and the reflection angle of the reflector via the controller, so that the ultraviolet light irradiates the deformable grid of the deformer.

[0061] The specific implementation method of the automatic testing device in Embodiment 2 is as follows:

[0062] The deformer and touch screen material are installed above the central control screen, with a small gap between the central control screen and the touch screen material;

[0063] The host computer controls the controller to send instructions, the controller receives the instructions and adjusts the ultraviolet projector to emit ultraviolet laser to irradiate on the deformer; the camera shoots the relative position image of the deformer and the ultraviolet laser and transmits to the controller and the host computer;

[0064] The host computer controls the controller to send instructions, the controller receives the instructions and adjusts the ultraviolet projector to emit ultraviolet laser to irradiate on the deformer; the camera shoots the relative position image of the deformer and the ultraviolet laser and transmits to the controller and the host computer;

[0065] The host computer controls the controller to send instructions, the controller receives the instructions and adjusts the ultraviolet projector to emit ultraviolet laser to irradiate on the deformer; the camera shoots the relative position image of the deformer and the ultraviolet laser and transmits to the controller and the host computer;

[0066] Although the present application has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that the technical solutions recorded in the foregoing embodiments can still be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.

Claims

1. A central control screen automation testing device, characterized in that, the device comprises a host computer, a controller, an ultraviolet projector, a deformer and a touch screen material; the host computer is used to compile an automation testing program and interact with the controller; the controller is used to control the ultraviolet projector and the reflector to adjust the irradiation position of the ultraviolet light; the ultraviolet projector is used to project ultraviolet light to the deformer; the deformer is densely provided with deformation grids, and the deformation grids are filled with high molecular gel in contact with the touch screen material; the touch screen material is elastic, is arranged at the bottom of the deformation grid of the deformer, and is used to click the central control screen; the touch screen material and the deformer are located above the central control screen, and a small gap is left between the touch screen material and the central control screen; the device further comprises a camera for shooting the position of the deformer and the irradiation position of the ultraviolet light; the device further comprises a reflector for reflecting the ultraviolet light and assisting in adjusting the irradiation position of the ultraviolet light on the deformer.

2. The device according to claim 1, characterized in that, the high molecular gel is a colorless triphenylmethane derivative.

3. The device according to claim 2, characterized in that, the high molecular gel is arranged between the transparent substance and the touch screen material.

4. A method for automatic testing of a central control screen based on a high polymer gel, characterized by, The method comprises: installing the deformer and the touch screen material above the central control screen, wherein a small gap is left between the central control screen and the touch screen material; the host computer adjusts the ultraviolet projector through the controller to emit ultraviolet light to irradiate on the deformer; the deformer expands through the internal high molecular gel, pushes the touch screen material to extrude on the central control screen; the host computer turns off the ultraviolet projector through the controller, and the high molecular gel shrinks to make the touch screen material shrink away from the central control screen; the above contents are cycled to irradiate all the deformation grids of the deformer to complete the automation testing; the camera shoots the relative position image of the deformer and the ultraviolet light, and transmits the image to the host computer through the controller; the host computer adjusts the projection angle of the ultraviolet projector and the reflection angle of the reflector according to the image through the controller to make the ultraviolet light irradiate on the deformation grid of the deformer.

5. The method according to claim 4, characterized in that, the controller controls the ultraviolet projector and the reflector individually or synchronously.

Citation Information

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