WO2018049786A1 - 测试设备和测试方法 - Google Patents

测试设备和测试方法 Download PDF

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Publication number
WO2018049786A1
WO2018049786A1 PCT/CN2017/073824 CN2017073824W WO2018049786A1 WO 2018049786 A1 WO2018049786 A1 WO 2018049786A1 CN 2017073824 W CN2017073824 W CN 2017073824W WO 2018049786 A1 WO2018049786 A1 WO 2018049786A1
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Prior art keywords
test
terminal
tested
auxiliary function
processor
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PCT/CN2017/073824
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English (en)
French (fr)
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袁雪
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中兴通讯股份有限公司
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Publication of WO2018049786A1 publication Critical patent/WO2018049786A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/22Detection or location of defective computer hardware by testing during standby operation or during idle time, e.g. start-up testing
    • G06F11/2273Test methods
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F11/00Error detection; Error correction; Monitoring
    • G06F11/22Detection or location of defective computer hardware by testing during standby operation or during idle time, e.g. start-up testing

Definitions

  • the present disclosure relates to the field of testing technology, for example to a test device and test method.
  • each mobile phone or each mobile phone single board needs to be equipped with a separate power supply, instrument, workbench and corresponding personnel, etc., but also to set up a test environment, which occupies more resources. . If you need to test multiple mobile phones, you can only queue them one by one if resources are limited. A drawback of the related art is that the testing of the terminal is inefficient.
  • the present disclosure provides a test device and a test method to improve test efficiency of the terminal.
  • the test device includes a Universal Serial Bus (USB) expansion module, a power extension module, and a processor
  • the USB expansion module includes at least two USB interfaces configured to be connected to the terminal to be tested.
  • the power extension module includes at least two power terminals configured to supply power to the terminal to be tested, and the processor is configured to acquire the terminal to be tested when detecting the terminal to be tested on the USB interface connection And controlling the corresponding test program according to the parameter of the tested terminal to test the terminal to be tested.
  • the processor is further configured to display parameters of the tested terminal, so that the user selects a corresponding test program based on the displayed parameters of the tested terminal; and the processor is further configured to receive When the test program selects an instruction, the test program corresponding to the test program selection instruction is controlled to run.
  • the processor is further configured to determine a test program corresponding to the parameter of the tested terminal according to a correspondence between the preset parameter and the test program, and control the determined test program to run.
  • the testing device further includes an auxiliary function
  • the processor is further configured to control opening of the auxiliary function.
  • the auxiliary function component includes at least one of a fan and a camera.
  • the processor is further configured to receive an auxiliary function component opening instruction, and control the auxiliary function component corresponding to the auxiliary function component opening instruction to be turned on.
  • the processor is further configured to open a command according to the preset parameter and the auxiliary function component.
  • the auxiliary function component opening instruction corresponding to the parameter of the tested terminal is determined, and the auxiliary function component corresponding to the auxiliary function component opening instruction is controlled to be turned on.
  • the processor is further configured to upload image data captured by the camera to a network.
  • the processor is further configured to upload test data generated during the testing to the network.
  • the testing device further includes an alarm
  • the processor is further configured to control the alarm to output an alarm signal when detecting a test abnormality.
  • the embodiment of the present disclosure further provides a testing method, which is applied to a testing device, including:
  • the test device When detecting the terminal to be tested on the universal serial bus USB interface connection, acquiring the parameter of the tested terminal, and controlling the corresponding test program to run according to the parameter of the tested terminal, to test the tested terminal
  • the test device has at least two USB interfaces and at least two power terminals that supply power to the terminals under test.
  • the testing method further includes:
  • test program selection instruction when received, controlling the test program corresponding to the test program selection instruction to run.
  • the testing method further includes:
  • the testing method further includes:
  • the testing method further includes:
  • the testing method further includes: determining, according to a correspondence between the preset parameter and the auxiliary function component opening instruction, an auxiliary function component opening instruction corresponding to the parameter of the tested terminal, and controlling the auxiliary function component to be turned on.
  • the auxiliary function corresponding to the instruction is turned on.
  • the testing method further includes:
  • the testing method further includes:
  • the testing method further includes:
  • the control alarm outputs an alarm signal when a test abnormality is detected.
  • Embodiments of the present disclosure also provide a non-transitory computer readable storage medium storing computer executable instructions arranged to perform the method of any of the above.
  • the test device includes a USB expansion module, a power extension module, and a processor
  • the USB expansion module including at least two USB interfaces configured to be connected to the terminal to be tested
  • the power expansion module includes at least two power terminals configured to supply power to the terminal to be tested, and when the processor detects the terminal to be tested connected to the USB interface, acquiring parameters of the terminal to be tested, and according to the The parameter of the measuring terminal controls the running of the corresponding testing program to test the terminal to be tested, so that the testing device can simultaneously test multiple tested terminals, thereby effectively improving the testing efficiency of the terminal.
  • FIG. 1 is a schematic diagram of functional modules of a first embodiment of a test apparatus according to the present disclosure
  • FIG. 2 is a schematic diagram of functional modules of a fourth embodiment of the testing device of the present disclosure.
  • FIG. 3 is a schematic diagram of functional modules of a sixth embodiment of the test apparatus of the present disclosure.
  • FIG. 4 is a flow chart of a first embodiment of a test method of the present disclosure.
  • FIG. 1 is a schematic diagram of functional modules of a first embodiment of a test apparatus according to the present disclosure.
  • the test device includes a USB expansion module 10, a power extension module 20, and a processor 30.
  • the USB expansion module 10 includes at least two USB interfaces configured to be connected to the terminal to be tested, and the power extension module 20 includes at least two
  • the processor 30 is configured to acquire the parameter of the tested terminal when detecting the terminal to be tested on the USB interface, and according to the terminal to be tested.
  • the parameters control the corresponding test program to run to test the terminal under test.
  • the shape of the test device is a cabinet, which may be one or more layers, and multiple hands.
  • the machine can perform testing work in the device at the same time, saving space by utilizing the space and reducing the external instrument.
  • the power expansion module 20 can be connected to an external power source and convert the external power source so that the output voltage of each power terminal meets the voltage requirement of the terminal under test.
  • Each of the terminals to be tested can be powered by the power expansion module 20; in addition, the power terminal of the power expansion module 20 can also be connected to an external device such as a fan or a camera. Therefore, the use of an external power supply to provide programmable voltages to the tested terminals such as multiple mobile phones, saving equipment such as external power supplies.
  • the power expansion module 20 can convert the power voltage to a required voltage, and the voltage value is controlled by the processor 30 to achieve adjustable voltage.
  • the power supply can be DC or AC, and AC-DC conversion or DC-DC conversion can be selected according to the actual situation of the power supply.
  • the switch controls the on and off of the output power supply so that unwanted channels can be turned off during operation.
  • the efficiency is 80%
  • the mobile phone voltage (ie output voltage) is 4.35V
  • the mobile phone current is 2.5A (the maximum working current of the mobile phone generally does not exceed 2.5A)
  • N is the number of mobile phones that can be loaded, that is, through this circuit
  • a fully loaded power supply can supply the maximum current required for 88 handsets.
  • one power supply can only supply one or two mobile phones or boards, and it can be seen that the number of power supply devices is greatly saved. While saving the amount, it also saves a lot of space.
  • the USB expansion module 10 can provide multiple USB interfaces, so that the test device can be connected to multiple mobile phones, thereby enabling simultaneous testing of multiple mobile phones.
  • the processor 30 can recognize the USB and acquire parameters of the terminal to be tested based on the USB interface.
  • the processor 30 is also arranged to control the operation of the test device, and to run the test device by calling and running a test program in the memory.
  • the parameter of the terminal to be tested may be, for example, an identifier of the terminal to be tested.
  • the processor 30 can automatically determine a corresponding test program according to the parameter of the terminal to be tested, and run the determined test program; or, the test program corresponding to the test terminal can be manually selected by the tester, and the test program is run by the processor 30. .
  • the test device may further include an interface module configured to implement communication between the test device and the computer.
  • the interface may include at least one of a wired interface and a wireless interface.
  • the wired interface can be a network port, a USB interface, a serial port, etc.
  • the wireless interface can be Wireless-Fidelity (WIFI), Bluetooth (BT), Radio Frequency Identification (RFID), and short-range wireless communication technology. (Near Field Communication, NFC) and infrared.
  • the test program can be set according to actual needs, for example, it can be a current monitoring program, a voltage monitoring program or an analog USB plug-in program.
  • the test apparatus is provided by a USB expansion module 10 including at least two USB interfaces configured to be connected to the terminal to be tested, a power extension module 20 including at least two power terminals configured to supply power to the terminal to be tested, and
  • the processor 30, when the processor 30 detects the terminal to be tested connected to the USB interface, acquires parameters of the tested terminal, and controls a corresponding test program to run according to parameters of the tested terminal, to The tested terminal is tested, so that the test device can test multiple tested terminals at the same time, which effectively improves the testing efficiency of the terminal.
  • the present disclosure also proposes a second embodiment of the test apparatus, which is different from the first embodiment in that, in the second embodiment, the processor 30 is further configured to display Determining a parameter of the terminal to be tested, so that the user selects a corresponding test program based on the displayed parameter of the terminal to be tested; the processor 30 is further configured to control the test program selection instruction when receiving the test program selection instruction The corresponding test program runs.
  • the test device may further include a human-computer interaction module configured to implement information interaction between the user and the test device, and the human-computer interaction module may be a display screen, a button, an indicator light, an alarm, and the like.
  • the parameter of the terminal to be tested can be displayed through the display, for example, the identifier of the terminal to be tested is displayed.
  • the user identifies the model of the currently tested terminal according to the displayed parameters of the terminal under test, and selects a corresponding test program for the terminal to be tested.
  • the user can enter a test program selection command.
  • the user can input a test program selection instruction through a keyboard.
  • the user can flexibly determine the test program of the tested terminal, and configure a corresponding test program for the tested terminal according to actual needs, which is convenient to configure and more convenient for testing.
  • the present disclosure also proposes a third embodiment of the test apparatus.
  • the processor 30 is further configured to Setting a correspondence between the parameter and the test program, determining a test program corresponding to the parameter of the tested terminal, and controlling the determined test program to run.
  • the corresponding relationship between the parameters (such as the identifier) of the tested terminal and the test program may be pre-stored in the memory, and after the parameters of the tested terminal are obtained, the tested terminal is saved according to the preset.
  • the corresponding relationship between the parameter and the test program determines the obtained test program corresponding to the parameter of the tested terminal, and runs the determined test program.
  • the user only needs to save the corresponding relationship between the parameter of the tested terminal and the test program in the memory in advance.
  • the test device can automatically determine the corresponding test program according to the parameter of the tested terminal. Automated testing improves test efficiency.
  • FIG. 2 is a schematic diagram of a functional module of the fourth embodiment of the testing device according to the present disclosure.
  • the test device further includes an auxiliary function component 40, the processor 30 further being arranged to control the opening of the auxiliary function component 40.
  • the auxiliary function 40 By setting the auxiliary function 40, the function of the test device can be expanded to further optimize the test process.
  • the auxiliary function component 40 includes at least one of a fan and a camera.
  • the fan can be used to ventilate the test equipment for the purpose of cooling the test equipment.
  • the camera can capture the operation of the test equipment, making it easy to monitor and reproduce the work scene, so that the test equipment can be monitored even if the tester is not on site.
  • the opening of the auxiliary function 40 can be manually controlled by the tester.
  • the auxiliary function component 40 can be manually input by the tester.
  • the processor 30 is further configured to receive the auxiliary function component 40 open command and control the auxiliary function component 40 to open the corresponding auxiliary function component 40 to be turned on.
  • the processor 30 is further configured to determine an auxiliary function component 40 open command corresponding to the parameter of the tested terminal according to a preset relationship between the preset parameter and the auxiliary function component 40 open command, and control the auxiliary function component 40 to open the command.
  • the corresponding auxiliary function component 40 is turned on.
  • the corresponding relationship between the parameter of the terminal to be tested and the opening command of the auxiliary function component 40 may be preset. For example, for the terminal to be tested of the first model, a fan-on command may be correspondingly set. Therefore, when it is detected that the terminal to be tested of the first model is connected to the USB interface, a fan on command is automatically generated, and the processor 30 will control the fan to be turned on.
  • the present disclosure further provides a fifth embodiment of the testing device.
  • the processor 30 is further configured to test The test data generated during the process is uploaded to the network. For example, you can upload data that needs to be saved during the test to the network.
  • the auxiliary function component 40 includes a camera
  • the processor 30 is further configured.
  • the image data captured by the camera is set to be uploaded to the network.
  • the monitoring data generated by the testing process is shared to the network, so that the tester can remotely monitor, which is more convenient for the monitoring work of the tester.
  • the present disclosure further provides a sixth embodiment of the testing device.
  • FIG. 3 is a function of the sixth embodiment of the testing device of the present disclosure.
  • the test apparatus further includes an alarm 50
  • the processor 30 is further configured to control the alarm 50 to output an alarm signal when a test abnormality is detected.
  • the alarm 50 can be an indicator light or a speaker or the like.
  • the processor 30 can control the indicator light to illuminate when the test device is in normal operation. After the work is finished, the processor 30 can control the indicator to go out.
  • the processor 30 can control the blinking of the indicator light, or the control indicator can be displayed in a preset color.
  • processor 30 can also control the speaker to turn on for an alarm when an abnormality occurs in the test.
  • FIG. 4 is a flowchart of a first embodiment of a test method according to the present disclosure. The method is applied to a test device, including:
  • the corresponding test program is controlled to run according to the parameter of the tested terminal to test the tested terminal, wherein the test device has at least two USB interfaces and at least two are the tested
  • the power supply terminal is powered by the terminal.
  • the second embodiment of the test method is also proposed by the present disclosure.
  • the second embodiment is different from the first embodiment.
  • the test method further includes:
  • test program selection instruction when received, controlling the test program corresponding to the test program selection instruction to run.
  • the third embodiment of the test method of the present disclosure further provides a third embodiment of the test method.
  • the third embodiment is different from the first embodiment.
  • the test method further includes:
  • the present disclosure further provides a fourth embodiment of the testing method, the testing method further comprising:
  • test device also includes an auxiliary feature.
  • the testing method further includes:
  • the auxiliary function component includes at least one of a fan and a camera.
  • the testing method further includes: determining, according to a correspondence between the preset parameter and the auxiliary function component opening instruction, an auxiliary function component opening instruction corresponding to the parameter of the tested terminal, and controlling the auxiliary function component opening instruction.
  • the corresponding accessibility feature is turned on.
  • the disclosure further provides a fifth embodiment of the testing method, where the testing method further includes:
  • the testing method further includes: uploading image data captured by the camera to the network.
  • the present disclosure further provides a sixth embodiment of the testing method, where the testing method further includes:
  • Embodiments of the present disclosure also provide a non-transitory computer readable storage medium storing computer executable instructions arranged to perform the testing method of any of the above embodiments.
  • the storage medium may be a magnetic disk, an optical disk, a read only memory (ROM), or a random access memory (RAM).
  • the present disclosure provides a test device and a test method, which can simultaneously test a plurality of devices to be tested, and effectively improve the test efficiency of the terminal.

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Abstract

一种测试设备和测试方法,所述测试设备包括USB扩展模块(10)、电源扩展模块(20)和处理器(30),其中,所述USB扩展模块(10)包括至少两个设置为与被测终端连接的USB接口,所述电源扩展模块(20)包括至少两个设置为为所述被测终端供电的电源端,以及所述处理器(30)设置为在检测到所述USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试。

Description

测试设备和测试方法 技术领域
本公开涉及测试技术领域,例如涉及一种测试设备和测试方法。
背景技术
相关技术中,在手机等终端研发调试和测试中,每台手机或每块手机单板都需要配备单独的电源、仪表、工作台及相应人员等,还要搭建测试环境,占用的资源较多。如果需要测试多台手机,在资源有限的情况下,只能排队逐台进行。相关技术的缺陷在于对终端的测试效率较低。
发明内容
本公开提供了一种测试设备和测试方法,提高对终端的测试效率。
本公开实施例提供的测试设备包括通用串行总线(Universal Serial Bus,USB)扩展模块、电源扩展模块和处理器,所述USB扩展模块包括至少两个设置为与被测终端连接的USB接口,所述电源扩展模块包括至少两个设置为为所述被测终端供电的电源端,以及所述处理器设置为在检测到所述USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试。
可选的,所述处理器还设置为显示所述被测终端的参数,以供用户基于显示的所述被测终端的参数选择对应的测试程序;以及所述处理器还设置为在接收到测试程序选择指令时,控制所述测试程序选择指令对应的测试程序运行。
可选的,所述处理器还设置为根据预设参数与测试程序的对应关系,确定所述被测终端的参数对应的测试程序,并控制确定的所述测试程序运行。
可选的,所述测试设备还包括辅助功能部件,所述处理器还设置为控制所述辅助功能部件的开启。
可选的,所述辅助功能部件包括风扇和摄像头中的至少一个。
可选的,所述处理器还设置为接收辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
可选的,所述处理器还设置为根据预设参数与辅助功能部件开启指令的对 应关系,确定所述被测终端的参数对应的辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
可选的,在所述辅助功能部件包括摄像头时,所述处理器还设置为将所述摄像头拍摄的图像数据上传至网络。
可选的,所述处理器还设置为将测试过程中生成的测试数据上传至网络。
可选的,所述测试设备还包括报警器,所述处理器还设置为在侦测到测试异常时,控制所述报警器输出报警信号。
本公开实施例还提供一种测试方法,应用于测试设备,包括:
在检测到通用串行总线USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试,其中,所述测试设备具有至少两个USB接口和至少两个为所述被测终端供电的电源端。
可选的,所述测试方法,还包括:
显示所述被测终端的参数,以供用户基于显示的所述被测终端的参数选择对应的测试程序;
以及在接收到测试程序选择指令时,控制所述测试程序选择指令对应的测试程序运行。
可选的,所述测试方法,还包括:
根据预设参数与测试程序的对应关系,确定所述被测终端的参数对应的测试程序,并控制确定的所述测试程序运行。
可选的,所述测试方法,还包括:
控制辅助功能部件的开启。
可选的,所述测试方法,还包括:
接收辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
可选的,所述测试方法,还包括:根据预设参数与辅助功能部件开启指令的对应关系,确定所述被测终端的参数对应的辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
可选的,所述测试方法,还包括:
将摄像头拍摄的图像数据上传至网络。
可选的,所述测试方法,还包括:
将测试过程中生成的测试数据上传至网络。
可选的,所述测试方法,还包括:
在侦测到测试异常时,控制报警器输出报警信号。
本公开实施例还提供一种非暂态计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述任一项的方法。
本公开实施例提出的测试设备和测试方法,所述测试设备包括USB扩展模块、电源扩展模块和处理器,所述USB扩展模块包括至少两个设置为与被测终端连接的USB接口,所述电源扩展模块包括至少两个设置为为所述被测终端供电的电源端,在处理器检测到所述USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试,从而使得该测试设备可以同时测试多个被测终端,有效地提高了对终端的测试效率。
附图说明
图1为本公开测试设备第一实施例的功能模块示意图;
图2为本公开测试设备第四实施例的功能模块示意图;
图3为本公开测试设备第六实施例的功能模块示意图;以及
图4为本公开测试方法第一实施例的流程图。
具体实施方式
应当理解,此处所描述的可选实施例仅仅用以解释本公开,并不用于限定本公开。在不冲突的情况下,实施例和实施例中的特征可以相互任意组合。
本实施例提出一种测试设备,用于测试终端,终端可以为手机或平板等。本实施例及以下实施例以终端为手机为例进行说明。参照图1,图1为本公开测试设备第一实施例的功能模块示意图。所述测试设备包括USB扩展模块10、电源扩展模块20和处理器30,所述USB扩展模块10包括至少两个设置为与被测终端连接的USB接口,所述电源扩展模块20包括至少两个设置为为所述被测终端供电的电源端,所述处理器30设置为在检测到所述USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试。
在本实施例中,测试设备的外形为一个机柜,可以是一层或多层,多台手 机可同时在该设备内进行测试工作,通过立体利用空间和减少外部仪表的方法,节约了空间。
电源扩展模块20可以与外部电源连接,并对外部电源进行转换,使得每个电源端的输出电压符合被测终端的电压需求。通过电源扩展模块20可以给每个被测终端进行供电;此外,电源扩展模块20的电源端还可以连接外部设备,例如风扇或摄像头等。从而实现了用一个外部电源给多台手机等被测终端提供可编程电压,节约了外部电源等仪器设备。可选的,电源扩展模块20可以把电源电压转换为所需电压,电压值由处理器30控制,实现电压的可调节。电源可以是直流或交流的,可以根据电源的实际情况来选择AC-DC转换或DC-DC转换。开关可控制输出电源的通断,这样可以在工作时关闭不需要的通道。以48V,25A电源为例,假设效率为80%,手机电压(即输出电压)为4.35V,手机电流为2.5A(手机最大工作电流一般不会超过2.5A),根据公式:Vin*Iin*η=Vout*Iout*N,带入可得,N=48*25*80%/4.35/2.5=88(取整数),N为可负荷的手机个数,也就是说,通过这块电路,1个满负荷工作的电源可以供给88个手机所需的最大电流。对比没有该设备的情况下,1个电源只能供给1台或2台手机或单板的情况,可以看出大大节省了电源设备的数量。节省数量的同时,也大大节省了空间。
USB扩展模块10可以提供多个USB接口,使得该测试设备可以同多个手机连接,进而实现了同时对多台手机进行测试工作。
处理器30可以识别USB,并基于USB接口获取被测终端的参数。处理器30还设置为控制测试设备的运行,通过调用并运行存储器内的测试程序,实现测试设备的运行。被测终端的参数例如可以为被测终端的标识。处理器30可以自动的根据被测终端的参数确定对应的测试程序,并运行确定的测试程序;或者,还可以通过测试人员手动选择与测试终端对应的测试程序,并由处理器30运行测试程序。
可选的,测试设备还可以包括接口模块,接口模块设置为实现该测试设备与计算机之间的通信。接口可以包括有线接口和无线接口中的至少一种。有线接口可以为网口、USB接口以及串口等,无线接口可以为无线保真(Wireless-Fidelity,WIFI)、蓝牙(Bluetooth,BT)、射频识别(Radio Frequency Identification,RFID)、近距离无线通信技术(Near Field Communication,NFC)以及红外等。
测试程序可以根据实际需要进行设置,例如,可以为电流监测程序、电压监测程序或模拟USB插拔程序等。
本公开提供的测试设备,通过设置包括至少两个设置为与被测终端连接的USB接口的USB扩展模块10、包括至少两个设置为为所述被测终端供电的电源端的电源扩展模块20以及处理器30,并在处理器30检测到所述USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试,从而使得该测试设备可以同时测试多个被测终端,有效地提高了对终端的测试效率。
基于本公开测试设备的第一实施例,本公开还提出了测试设备的第二实施例,与第一实施例不同的是,在第二实施例中,所述处理器30还设置为显示所述被测终端的参数,以供用户基于显示的所述被测终端的参数选择对应的测试程序;所述处理器30还设置为在接收到测试程序选择指令时,控制所述测试程序选择指令对应的测试程序运行。
在本实施例中,测试设备还可以包括人机交互模块,设置为实现用户和测试设备之间的信息交互,人机交互模块可以为显示屏、按键、指示灯以及警报器等。
可选的,可以通过显示器显示被测终端的参数,例如,显示被测终端的标识。用户根据显示的被测终端的参数来识别当前测试的终端的型号,并为被测终端选择相应的测试程序。
用户可以输入测试程序选择指令。可选的,用户可以通过键盘输入测试程序选择指令。
本实施例中,用户可以灵活的确定被测终端的测试程序,并根据实际需要为被测终端配置相应的测试程序,配置方便,更加便于测试。
基于本公开测试设备的第一实施例,本公开还提出了测试设备的第三实施例,与第一实施例不同的是,在第三实施例中,所述处理器30还设置为根据预设参数与测试程序的对应关系,确定所述被测终端的参数对应的测试程序,并控制确定的所述测试程序运行。
在本实施例中,存储器里可以预先保存有被测终端的参数(如标识)与测试程序的对应关系,在获取到被测终端的参数后,根据预设先保存的被测终端 的参数与测试程序的对应关系,确定获取到的被测终端的参数对应的测试程序,并运行确定的测试程序。本实施例中,用户只需要预先将被测终端的参数与测试程序的对应关系保存在存储器中即可,在后续的测试中,测试设备可以自动根据被测终端的参数确定对应的测试程序,实现自动测试,更加提高测试效率。
基于本公开测试设备的第一至第三任一实施例,本公开还提出了测试设备的第四实施例,参照图2,图2为本公开测试设备第四实施例的功能模块示意图,在第四实施例中,所述测试设备还包括辅助功能部件40,所述处理器30还设置为控制所述辅助功能部件40的开启。通过设置辅助功能部件40,可以扩展测试设备的功能,更加优化测试过程。
可选的,所述辅助功能部件40包括风扇和摄像头中的至少一个。风扇可以用于给测试设备通风,达到为测试设备降温的目的。摄像头可以拍摄测试设备内的运行情况,便于监控和复现工作场景,从而使得在测试设备运行时,即使测试人员不在现场也可以进行监控。
可以由测试人员手动控制辅助功能部件40的开启。可选的,可以由测试人员手动输入辅助功能部件40开启指令。所述处理器30还设置为接收辅助功能部件40开启指令,并控制所述辅助功能部件40开启指令对应的辅助功能部件40开启。
可选的,为了更加提高测试设备的智能性,还可以根据被测终端的参数确定是否生成辅助功能部件40开启指令。所述处理器30还设置为根据预设参数与辅助功能部件40开启指令的对应关系,确定所述被测终端的参数对应的辅助功能部件40开启指令,并控制所述辅助功能部件40开启指令对应的辅助功能部件40开启。在本实施例中,可以预设被测终端的参数与辅助功能部件40开启指令的对应关系,例如,对于第一型号的被测终端,可以对应设置风扇开启指令。因此,在检测到第一型号的被测终端连接到USB接口时,则自动生成风扇开启指令,则处理器30将控制风扇开启。
可选的,基于本公开测试设备的第一至第四任一实施例,本公开还提出了测试设备的第五实施例,在第五实施例中,所述处理器30还设置为将测试过程中生成的测试数据上传至网络。例如,可以将测试过程中需要保存的数据上传至网络。可选的,在所述辅助功能部件40包括摄像头时,所述处理器30还设 置为将所述摄像头拍摄的图像数据上传至网络。从而实现了将测试过程产生的监控数据共享至网络,使得测试人员可以远程监控,更加便于测试人员的监控工作。
可选的,基于本公开测试设备的第一至第五任一实施例,本公开还提出了测试设备的第六实施例,参照图3,图3为本公开测试设备第六实施例的功能模块示意图,在第六实施例中,所述测试设备还包括报警器50,所述处理器30还设置为在侦测到测试异常时,控制所述报警器50输出报警信号。报警器50可以为指示灯或扬声器等。可选的,在测试设备正常工作时,处理器30可以控制指示灯点亮。工作结束后,处理器30可以控制指示灯熄灭。在测试出现异常时,处理器30可以控制指示灯闪烁,或者控制指示灯以预设颜色显示。或者,在测试出现异常时,处理器30还可以控制扬声器开启,以进行报警。
本公开还提出了测试方法的第一实施例,参照图4,图4为本公开测试方法的第一实施例的流程图,该方法应用于测试设备,包括:
在S410中,在检测到USB接口连接上被测终端时,获取所述被测终端的参数。
在S420中,根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试,其中,所述测试设备具有至少两个USB接口和至少两个为所述被测终端供电的电源端。
基于本公开测试方法的第一实施例,本公开还提出了测试方法的第二实施例,与第一实施例不同的是,在第二实施例中,所述测试方法还包括:
显示所述被测终端的参数,以供用户基于显示的所述被测终端的参数选择对应的测试程序;
以及在接收到测试程序选择指令时,控制所述测试程序选择指令对应的测试程序运行。
本公开测试方法的第一实施例,本公开还提出了测试方法的第三实施例,与第一实施例不同的是,在第三实施例中,所述测试方法还包括:
根据预设参数与测试程序的对应关系,确定所述被测终端的参数对应的测 试程序,并控制确定的所述测试程序运行。
基于本公开测试方法的第一至第三任一实施例,本公开还提出了测试方法的第四实施例,所述测试方法还包括:
控制辅助功能部件的开启。
可选的,测试设备还包括辅助功能部件。
可选的,所述测试方法还包括:
接收辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
可选的,所述辅助功能部件包括风扇和摄像头中的至少一个。
可选的,所述测试方法还包括:根据预设参数与辅助功能部件开启指令的对应关系,确定所述被测终端的参数对应的辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
可选的,基于本公开测试方法的第一至第四实施例,本公开还提出了测试方法的第五实施例,所述测试方法还包括:
将测试过程中生成的测试数据上传至网络。
可选的,在所述辅助功能部件包括摄像头时,所述测试方法还包括:将摄像头拍摄的图像数据上传至网络。
可选的,基于本公开测试方法的第一至第五实施例,本公开还提出了测试方法的第六实施例,所述测试方法还包括:
在侦测到测试异常时,控制报警器输出报警信号。本公开实施例还提供一种非暂态计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行上述任一实施例中的测试方法。
本领域普通技术人员可以理解实现上述实施例方法中的全部或部分流程,是可以通过计算机程序来指令相关的硬件来完成,所述的程序可存储于一计算机可读取存储介质中,该程序在执行时,可包括如上述各方法的实施例的流程。其中,所述的存储介质可为磁碟、光盘、只读存储记忆体(ROM)或随机存储记忆体(RAM)等。
需要说明的是,在本文中,术语“包括”、“包含”或者任何其他变体意在 涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者装置不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者装置所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括该要素的过程、方法、物品或者装置中还存在另外的相同要素。
上述本公开实施例序号仅仅为了描述,不代表实施例的优劣。
以上仅为本公开的可选实施例,并非因此限制本公开的专利范围,凡是利用本公开说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本公开的专利保护范围内。
工业实用性
本公开提供了一种测试设备和测试方法,可以同时测试多个被测终端,有效地提高了对终端的测试效率。

Claims (20)

  1. 一种测试设备,包括通用串行总线USB扩展模块、电源扩展模块和处理器,其中,
    所述USB扩展模块包括至少两个设置为与被测终端连接的USB接口,所述电源扩展模块包括至少两个设置为为所述被测终端供电的电源端,以及所述处理器设置为在检测到所述USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试。
  2. 如权利要求1所述的测试设备,其中,所述处理器还设置为显示所述被测终端的参数,以供用户基于显示的所述被测终端的参数选择对应的测试程序;以及所述处理器还设置为在接收到测试程序选择指令时,控制所述测试程序选择指令对应的测试程序运行。
  3. 如权利要求1所述的测试设备,其中,所述处理器还设置为根据预设参数与测试程序的对应关系,确定所述被测终端的参数对应的测试程序,并控制确定的所述测试程序运行。
  4. 如权利要求1所述的测试设备,其中,所述测试设备还包括辅助功能部件,所述处理器还设置为控制所述辅助功能部件的开启。
  5. 如权利要求4所述的测试设备,其中,所述辅助功能部件包括风扇和摄像头中的至少一个。
  6. 如权利要求4所述的测试设备,其中,所述处理器还设置为接收辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
  7. 如权利要求4所述的测试设备,其中,所述处理器还设置为根据预设参数与辅助功能部件开启指令的对应关系,确定所述被测终端的参数对应的辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
  8. 如权利要求5所述的测试设备,其中,在所述辅助功能部件包括摄像头时,所述处理器还设置为将所述摄像头拍摄的图像数据上传至网络。
  9. 如权利要求1至8任一项所述的测试设备,其中,所述处理器还设置为将测试过程中生成的测试数据上传至网络。
  10. 如权利要求1至8任一项所述的测试设备,其中,所述测试设备还包括报警器,所述处理器还设置为在侦测到测试异常时,控制所述报警器输出报 警信号。
  11. 一种测试方法,应用于测试设备,包括:
    在检测到通用串行总线USB接口连接上被测终端时,获取所述被测终端的参数,并根据所述被测终端的参数控制相应的测试程序运行,以对所述被测终端进行测试,其中,所述测试设备具有至少两个USB接口和至少两个为所述被测终端供电的电源端。
  12. 如权利要求11所述的测试方法,还包括:
    显示所述被测终端的参数,以供用户基于显示的所述被测终端的参数选择对应的测试程序;
    以及在接收到测试程序选择指令时,控制所述测试程序选择指令对应的测试程序运行。
  13. 如权利要求11所述的测试方法,还包括:
    根据预设参数与测试程序的对应关系,确定所述被测终端的参数对应的测试程序,并控制确定的所述测试程序运行。
  14. 如权利要求11所述的测试方法,还包括:
    控制辅助功能部件的开启。
  15. 如权利要求14所述的测试方法,还包括:
    接收辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
  16. 如权利要求14所述的测试方法,还包括:根据预设参数与辅助功能部件开启指令的对应关系,确定所述被测终端的参数对应的辅助功能部件开启指令,并控制所述辅助功能部件开启指令对应的辅助功能部件开启。
  17. 如权利要求14所述的测试方法,还包括:
    将摄像头拍摄的图像数据上传至网络。
  18. 如权利要求11-17任一项所述的测试方法,还包括:
    将测试过程中生成的测试数据上传至网络。
  19. 如权利要求11-17任一项所述的测试方法,还包括:
    在侦测到测试异常时,控制报警器输出报警信号。
  20. 一种非暂态计算机可读存储介质,存储有计算机可执行指令,所述计算机可执行指令设置为执行权利要求11-19任一项的方法。
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