WO2017088436A1 - 电视机内置dongle的性能检测方法和系统 - Google Patents

电视机内置dongle的性能检测方法和系统 Download PDF

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Publication number
WO2017088436A1
WO2017088436A1 PCT/CN2016/084622 CN2016084622W WO2017088436A1 WO 2017088436 A1 WO2017088436 A1 WO 2017088436A1 CN 2016084622 W CN2016084622 W CN 2016084622W WO 2017088436 A1 WO2017088436 A1 WO 2017088436A1
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Prior art keywords
dongle
remote controller
control terminal
built
production line
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PCT/CN2016/084622
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English (en)
French (fr)
Inventor
林大煜
安慎华
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深圳Tcl数字技术有限公司
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Publication of WO2017088436A1 publication Critical patent/WO2017088436A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N17/00Diagnosis, testing or measuring for television systems or their details
    • H04N17/04Diagnosis, testing or measuring for television systems or their details for receivers

Definitions

  • the present invention relates to the field of television technology, and in particular, to a performance detection method and system for a built-in dongle of a television set.
  • the performance when the Dongle built in the TV set is assembled in the factory, the performance may be poor or even invalid due to static electricity, the connection line, and the antenna being not inserted.
  • the manufacturer In order to ensure the good performance of the dongle of each factory TV set, the manufacturer will set up a dedicated station in the assembly process to check whether the performance of the dongle built in each TV is normal, that is, to check whether the built-in dongle performance in each TV is good. .
  • the existing television dongle performance detection method is specifically: using a remote controller to perform pairing with the dongle of each television set, and then detecting the 2.4G between the remote controller and the dongle after the code is successful. Is the RF function normal?
  • the existing detection method has the following problems: due to 2.4G The RF signal has no directionality, and the distance between adjacent TV sets on the production line is relatively close, so interference in the code process is easy to occur, resulting in crosstalk; it is impossible to detect whether the dongle antenna is normal; since the Dongle of each TV set needs to be Code, long code time, low detection efficiency.
  • the main object of the present invention is to solve the technical problem that the code crosstalk is easily detected in the prior art TV dongle performance, and the Dongle antenna cannot be detected normally; the code time is long and the detection efficiency is low.
  • the present invention provides a method for detecting performance of a built-in dongle of a television set, involving at least one production line, each of which includes: a control terminal, a plurality of televisions with built-in dongle, a remote controller; and a television set of the same production line.
  • the built-in dongle sets the same ID, and is different from the ID of the built-in dongle of the TV set of other production lines; for a production line, the performance detection method of the built-in dongle of the television set includes:
  • Step S10 After the television enters the detection station, according to the detection instruction issued by the control terminal, the built-in dongle is controlled to enter the detection mode;
  • Step S20 the dongle determines whether it is the first dongle of the production line in the detection mode; if yes, proceeds to step S30; otherwise, proceeds to step S40;
  • Step S30 the dongle and the corresponding remote controller pair code, send the ID to the remote controller, so that the remote controller stores the ID as the public ID of all the dongle of the production line;
  • Step S40 The remote controller establishes a radio frequency connection with the dongle according to the public ID stored by the remote controller;
  • Step S50 the dongle reads the RSSI value of the remote controller, and reports it to the control terminal;
  • Step S60 The control terminal determines, according to the RSSI value, whether the antenna of the dongle is normal
  • the control terminal pre-sets a normal RSSI range value corresponding to the dongle antenna, where the normal RSSI range value is tested by multiple functional normal dongle in the same environment, and the RSSI range determined according to multiple test results
  • the value of the step S60 specifically includes:
  • the control terminal compares the RSSI value reported by the dongle with the normal RSSI range value
  • the method further includes:
  • the dongle After the dongle fails to connect to the remote controller, the dongle reports radio frequency connection failure information to the control terminal.
  • the method further includes:
  • the dongle After the dongle successfully connects to the remote controller, the dongle reports the radio frequency connection success information to the control terminal.
  • the method further includes:
  • the control terminal After receiving the RSSI value, the control terminal sends a detection mode exit instruction to the dongle, causes the dongle to exit the detection mode, and controls the dongle to enter the next station.
  • the present invention also provides a performance detecting method for a built-in dongle of a television set, relating to at least one production line, each of which comprises: a control terminal, a plurality of televisions with built-in dongle, and a remote controller; the same production line
  • the TV built-in dongle sets the same ID, and is different from the ID of the built-in dongle of the TV set of other production lines; for a production line, the performance detection method of the built-in dongle of the TV set includes:
  • Step S10 After the television enters the detection station, according to the detection instruction issued by the control terminal, the built-in dongle is controlled to enter the detection mode;
  • Step S20 the dongle determines whether it is the first dongle of the production line in the detection mode; if yes, proceeds to step S30; otherwise, proceeds to step S40;
  • Step S30 the dongle and the corresponding remote controller pair code, send the ID to the remote controller, so that the remote controller stores the ID as the public ID of all the dongle of the production line;
  • Step S40 The remote controller establishes a radio frequency connection with the dongle according to the public ID stored by the remote controller;
  • Step S50 the dongle reads the RSSI value of the remote controller, and reports it to the control terminal;
  • Step S60 The control terminal determines, according to the RSSI value, whether the antenna of the dongle is normal.
  • the method further includes:
  • the dongle After the dongle fails to connect to the remote controller, the dongle reports radio frequency connection failure information to the control terminal.
  • the method further includes:
  • the dongle After the dongle successfully connects to the remote controller, the dongle reports the radio frequency connection success information to the control terminal.
  • control terminal is pre-set with a normal RSSI range value corresponding to the dongle antenna; the step S60 specifically includes:
  • the control terminal compares the RSSI value reported by the dongle with the normal RSSI range value
  • the method further includes:
  • the control terminal After receiving the RSSI value, the control terminal sends a detection mode exit instruction to the dongle, causes the dongle to exit the detection mode, and controls the dongle to enter the next station.
  • the present invention further provides a performance detecting system for a built-in dongle of a television set.
  • the dongle performance detecting system of the television set includes: at least one production line, and the TV dongle of the same production line sets the same ID, and is different.
  • the control terminal is configured to send a detection instruction to the television set that enters the detection station to the corresponding production line; and determine whether the antenna of the dongle is normal according to the RSSI value of the remote controller reported by the dongle;
  • the television set is configured to control the built-in dongle to enter the detection mode according to the detection instruction issued by the control terminal after entering the detecting station;
  • the dongle is used to determine whether it is the first dongle of the production line in the detection mode; if not, the RSSI value of the remote controller read after establishing the radio frequency connection with the remote controller is reported to the control terminal; if yes, Then, the corresponding remote controller is paired with the remote controller, and the remote controller RSSI value that is read after the RF connection is established with the remote controller is reported to the control terminal;
  • the remote controller is configured to receive an ID sent by the first dongle of the production line, store the ID as a common ID of all the dongles of the production line, and enter the detecting station according to the public ID stored in the production line and each of the production lines.
  • the dongle in the detection mode establishes a radio connection.
  • the dongle is further configured to report radio frequency connection failure information to the control terminal after the radio connection with the remote controller fails.
  • the dongle is further configured to report radio frequency connection success information to the control terminal after the radio connection with the remote controller is successful.
  • control terminal is pre-set with a normal RSSI range value corresponding to the dongle antenna
  • the control terminal is further configured to compare the RSSI value reported by the dongle with the normal RSSI range value; and when the RSSI value is within the normal RSSI range value, confirm that the antenna of the dongle is normal; When the RSSI value is not within the normal RSSI range value, it is confirmed that the antenna of the dongle is abnormal.
  • control terminal is further configured to: after receiving the RSSI value sent by the dongle, send a detection mode exit instruction to the dongle, cause the dongle to exit the detection mode, and control the dongle to enter the next work. Bit.
  • the method and system for detecting the dongle performance of the television set sets the same ID for the built-in dongle of the TV set of the same production line, and is different from the ID of the built-in dongle of the television set of other production lines; for one production line, the television enters the detection After the station, according to the detection instruction issued by the control terminal, the control built-in dongle enters the detection mode; the dongle determines whether it is the first dongle of the production line in the detection mode; if not, the remote controller stores according to itself
  • the public ID establishes a radio frequency connection with the dongle; if yes, before the radio frequency is established with the remote controller, the code is sent to the remote controller with the corresponding remote controller, so that the remote controller uses the ID as the production line.
  • the dongle reads the RSSI value of the remote controller after establishing a radio frequency connection with the remote controller, and reports the RSSI value of the remote controller to the control terminal; the control terminal determines the antenna of the dongle according to the RSSI value. Is it normal to detect the success of the radio connection between the built-in dongle and the remote control on the TV? Television antenna built normal dongle, the dongle and prevent remote control of the decoding process on the code crosstalk phenomenon occurs, greatly reducing the entire production line time of the code, which greatly improves the efficiency of the built-in TV dongle performance testing.
  • FIG. 1 is a schematic flow chart of an embodiment of a method for detecting performance of a built-in dongle of a television set according to the present invention
  • FIG. 2 is a schematic diagram of a specific refinement process of step S106 in FIG. 1;
  • FIG. 3 is a schematic structural view of an embodiment of a performance detecting system for a built-in dongle of a television set according to the present invention.
  • the invention provides a performance detecting method for a built-in dongle of a television set.
  • the performance detecting method of the built-in dongle of the television of the present invention involves at least one production line, and each production line includes: a control terminal, a plurality of televisions with built-in dongle, and a remote controller.
  • the built-in Dongle of the same production line sets the same ID, and is different from the ID of the built-in dongle of the TV set of other production lines, that is, the ID of the dongle set by different production lines is different.
  • 1 is a schematic flow chart of an embodiment of a method for detecting performance of a built-in dongle of a television set according to the present invention.
  • the performance detection method of the built-in dongle of the television set includes:
  • Step S101 After the television enters the detection station, according to the detection instruction issued by the control terminal, the built-in dongle is controlled to enter the detection mode.
  • the control terminal determines a production line controlled by itself according to a production line selection instruction input by the user. Since the IDs of the dongles set by different production lines are different, the ID of the dongle set by the production line can be input to the control terminal as a production line selection command, and the control terminal can determine the currently controlled production line after receiving the ID of the dongle. At this time, the control terminal needs to monitor the currently controlled production line in real time. Once the production line has a television entering the detection station, a detection command is issued to the television.
  • Step S102 The dongle determines whether it is the first dongle of the production line in the detection mode; if yes, the process goes to step S103; otherwise, the process goes to step S104.
  • Step S103 The dongle and the corresponding remote controller pair code send the ID to the remote controller, so that the remote controller stores the ID as a common ID of all the dongle of the production line.
  • the ID sent by the first dongle of the production line can be regarded as the ID of each dongle in the production line, that is, the first one can be
  • the ID sent by the dongle is the public ID of all the dongle of the production line.
  • Step S104 The remote controller establishes a radio frequency connection with the dongle according to the public ID stored by the remote controller.
  • the dongle built in all the televisions in one production line is set with the same ID. Therefore, the first dongle of the production line and the remote control pair code send their own ID to the remote controller, which is equivalent to the ID of each dongle of the production line. Therefore, the dongle after the first dongle of the production line does not need to send its own ID to the remote controller through the code.
  • the remote controller can establish an RF connection with each dongle entering the detection station and entering the detection mode according to the ID sent by the first dongle of the production line.
  • Step S105 The dongle reads the RSSI value of the remote controller and reports it to the control terminal.
  • the method further includes: determining whether the remote controller is successfully connected to the dongle radio frequency; if the failure occurs, the dongle fails to connect to the remote controller after the radio frequency connection fails, to the control terminal Report the radio connection failure message. If successful, the dongle reports the radio frequency connection success information to the control terminal after the radio connection with the remote controller is successful.
  • the dongle since the dongle successfully establishes a radio frequency connection with the remote controller, the RSSI value of the remote controller connected to the radio frequency is immediately read. The reported RSSI value is reported to the control terminal. Therefore, the dongle in the present invention can report the read RSSI value as a radio frequency connection success message to the control terminal.
  • Step S106 The control terminal determines, according to the RSSI value, whether the antenna of the dongle is normal.
  • control terminal is pre-set with a normal RSSI range value corresponding to the dongle antenna.
  • the normal RSSI range value is determined according to the multiple test results, that is, a minimum value X and one are obtained from the multiple test results.
  • the maximum value D with [minimum value X, maximum value D] as the normal RSSI range value.
  • FIG. 2 is a schematic diagram of a specific refinement process of step S106 in FIG.
  • the step S106 is specifically processed as follows:
  • Step S1061 The control terminal compares the RSSI value reported by the dongle with the normal RSSI range value.
  • Step S1062 When the RSSI value is within the normal RSSI range value, it is confirmed that the antenna of the dongle is normal.
  • Step S1063 When the RSSI value is not within the normal RSSI range value, confirm that the antenna of the dongle is abnormal.
  • the control terminal further includes: after receiving the RSSI value, sending, by the control terminal, a detection mode exit instruction to the dongle, so that the dongle exits the detection mode, And controlling the dongle to enter the next station. That is to say, the next dongle for the production line will give up the inspection station.
  • the control of the dongle to enter the next station is actually to control the television corresponding to the dongle to enter the next station, and to give up the inspection station for the next TV set of the production line.
  • the control terminal involved in the performance test method of the above-mentioned television built-in dongle is connected with each TV set in the production line controlled by the same through the serial port to realize mutual data communication; each main control chip of each television set and The built-in dongle chip is connected through the serial port to realize data communication with each other.
  • the dongle performance detecting method of the television set sets the same ID for the built-in dongle of the TV set of the same production line, and is different from the ID of the built-in dongle of the TV set of other production lines; for one production line, the television enters the inspection worker After the bit, according to the detection instruction issued by the control terminal, the control built-in dongle enters the detection mode; the dongle determines whether it is the first dongle of the production line in the detection mode; if not, the remote controller stores the common according to its own ID and the dongle establish a radio frequency connection; if yes, before the RF is established with the remote controller, the ID is sent to the remote controller with the corresponding remote controller, so that the remote controller uses the ID as the production line.
  • the RSSE value of the remote controller is read and reported to the control terminal after establishing a radio frequency connection with the remote controller; and the control terminal determines whether the antenna of the dongle is determined according to the RSSI value
  • the normal way is to detect the success of the radio connection between the built-in dongle and the remote control on the TV.
  • Television built dongle antenna is normal, to eliminate the dongle and remote control of the decoding process on the code crosstalk phenomenon occurs, greatly reducing the entire production line of code time, which greatly improves the efficiency of the television built dongle performance testing.
  • FIG. 3 is a schematic structural diagram of an embodiment of a performance detecting system for a built-in dongle of a television set according to the present invention.
  • the dongle performance detecting system 100 of the television set includes: at least one production line, and the built-in dongle of the same production line sets the same ID, and is different from the ID of the built-in dongle of the television of other production lines, that is, different The ID of the dongle set in the production line is different.
  • Each production line includes: a control terminal 110, a plurality of television sets 120 with a dongle built therein, and a remote controller 130.
  • the control terminal 110 is configured to send a detection instruction to the television 120 that enters the detection station to the corresponding production line; and determine whether the antenna of the dongle is normal according to the remote controller RSSI value reported by the dongle.
  • the television set 120 is configured to control the built-in dongle to enter the detection mode according to the detection instruction issued by the control terminal after entering the detection station.
  • the dongle is used to determine whether it is the first dongle of the production line in the detection mode; if not, the RSSI value of the remote controller 130 read after the radio frequency connection is established with the remote controller is reported to the control terminal; If yes, the ID is sent to the remote controller, and the RSSI value of the remote controller 130 read after the RF connection is established with the remote controller is reported to the control terminal.
  • the remote controller 130 is configured to receive an ID sent by the first dongle of the production line, store the ID as a common ID of all the dongles 121 of the production line, and enter a checker according to the public ID stored in the production line and each of the production lines.
  • the dongle in the bit mode and in the detection mode establishes a radio connection.
  • the control terminal 110 determines a production line controlled by itself according to a production line selection instruction input by the user. Since the IDs of the dongles set by different production lines are different, the ID of the dongle set by the production line can be input to the control terminal 110 as a production line selection command, and the control terminal 110 can determine the currently controlled production line after receiving the ID of the dongle. At this time, the control terminal 110 needs to monitor the currently controlled production line in real time. Once the production line has the television 120 entering the detection station, a detection command is issued to the television 120.
  • the ID sent by the first dongle of the production line can be regarded as the ID of each dongle in the production line, that is, the first The ID sent by the dongle is used as the common ID of all the dongle of the production line.
  • the same ID is set for the dongle built in all the TVs in one production line. Therefore, the first dongle of the production line and the remote control pair code send their own ID to the remote controller, which is equivalent to the ID of each dongle of the production line. Therefore, the dongle after the first dongle of the production line does not need to send its own ID to the remote controller through the code.
  • the remote controller can establish an RF connection with each dongle entering the detection station and entering the detection mode according to the ID sent by the first dongle of the production line.
  • the dongle is further configured to determine whether the radio frequency connection with the remote controller is successful after establishing a radio frequency connection operation with the remote controller; After the radio frequency connection fails, the radio terminal connection failure information is reported to the control terminal; and after the radio connection with the remote controller is successful, the radio frequency connection success information is reported to the control terminal.
  • the dongle since the dongle successfully establishes a radio frequency connection with the remote controller, the RSSI value of the remote controller connected to the radio frequency is immediately read. The reported RSSI value is reported to the control terminal. Therefore, the dongle in the present invention can report the read RSSI value as a radio frequency connection success message to the control terminal.
  • the control terminal 110 is pre-set with a normal RSSI range value corresponding to the dongle antenna.
  • the control terminal is further configured to compare the RSSI value reported by the dongle with the normal RSSI range value; and when the RSSI value is within the normal RSSI range value, confirm that the antenna of the dongle is normal; When the RSSI value is not within the normal RSSI range value, it is confirmed that the antenna of the dongle is abnormal.
  • the normal RSSI range value is determined according to the multiple test results, that is, a minimum value X and one are obtained from the multiple test results.
  • the maximum value D with [minimum value X, maximum value D] as the normal RSSI range value.
  • the control terminal 110 is further configured to: after receiving the RSSI value sent by the dongle, send a detection mode exit instruction to the dongle to control the dongle Exit the detection mode and control the dongle to enter the next station. That is to say, the next dongle for the production line will give up the inspection station.
  • the control of the dongle to enter the next station is actually to control the television corresponding to the dongle to enter the next station, and to give up the inspection station for the next TV set of the production line.
  • control terminal 110 and each of the television sets 120 in the production line controlled by the same are connected through a serial port to realize mutual data communication; each of the televisions
  • the main control chip of the machine 120 and the built-in dongle chip are connected through a serial port to realize mutual data communication.
  • the dongle performance detecting system 100 of the television set sets the same ID for the built-in dongle of the TV set of the same production line, and is different from the ID of the built-in dongle of the TV set of other production lines; for one production line, the television enters the detection After the station, according to the detection instruction issued by the control terminal, the control built-in dongle enters the detection mode; the dongle determines whether it is the first dongle of the production line in the detection mode; if not, the remote controller stores according to itself
  • the public ID establishes a radio frequency connection with the dongle; if yes, before the radio frequency is established with the remote controller, the code is sent to the remote controller with the corresponding remote controller, so that the remote controller uses the ID as the production line.
  • the dongle reads the RSSI value of the remote controller after establishing a radio frequency connection with the remote controller, and reports the RSSI value of the remote controller to the control terminal; the control terminal determines the antenna of the dongle according to the RSSI value. Is it normal to detect the success of the radio connection between the built-in dongle and the remote control on the TV? Television antenna built normal dongle, the dongle and prevent remote control of the decoding process on the code crosstalk phenomenon occurs, greatly reducing the entire production line time of the code, which greatly improves the efficiency of the built-in TV dongle performance testing.

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Abstract

本发明公开了一种电视机内置dongle的性能检测方法,方法:电视机进入检测工位后,根据检测指令,控制自身dongle进入检测模式;dongle判断自身是否为第一个;若否,遥控器根据公用ID与dongle建立射频连接;若是,建立与遥控器的射频连接之前与对应的遥控器对码,将自身ID发送给遥控器,使遥控器将ID作为公用ID存储;dongle读取遥控器的RSSI值,上报给控制终端;控制终端根据RSSI值确定dongle的天线是否正常。本发明还公开了系统。本发明的方法和系统,能够检测到dongle天线是否正常,杜绝了对码串扰的现象发生,缩减了整条生产线对码时间,提高了dongle性能检测的效率。

Description

电视机内置dongle的性能检测方法和系统
技术领域
本发明涉及电视机技术领域,尤其涉及一种电视机内置dongle的性能检测方法和系统。
背景技术
现有技术中电视机中内置的dongle在工厂组装时,可能会由静电,连接线、天线未插好等原因导致性能不好甚至失效。为了确保每台出厂电视机的dongle性能良好,生产厂商会在组装流程中设置一个专属工位检测每台电视机中内置的dongle性能是否正常,即检测每台电视机中内置的dongle性能是否良好。
其中,现有的电视机dongle性能检测方法具体为:采用遥控器与每一台电视机的dongle进行对码,对码成功后再检测遥控器与dongle之间的2.4G RF功能是否正常。然而现有的这种检测方式存在如下问题:由于2.4G RF信号无方向性,而产线上相邻的电视机间距比较近,因而在对码过程中容易出现干扰,从而导致串扰;无法检测dongle天线是否正常;由于每台电视机的dongle均需要对码,对码时间长,检测效率低下。
发明内容
本发明的主要目的在于解决现有技术电视机dongle性能检测过程中,容易出现对码串扰、无法检测dongle天线是否正常;对码时间长,检测效率低下的技术问题。
为实现上述目的,本发明提供的一种电视机内置dongle的性能检测方法,涉及至少一条生产线,每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器;同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,所述电视机内置dongle的性能检测方法包括:
步骤S10、电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;
步骤S20、所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若是,则转入步骤S30;否则转入步骤S40;
步骤S30、所述dongle与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;
步骤S40、所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;
步骤S50、所述dongle读取所述遥控器的RSSI值,并上报给所述控制终端;
步骤S60、所述控制终端根据所述RSSI值确定所述dongle的天线是否正常;其中,
所述控制终端预设有dongle天线所对应的正常RSSI范围值,所述正常RSSI范围值由多个功能正常dongle置于相同环境下进行多次测试,并根据多次的测试结果确定的RSSI范围值;所述步骤S60具体包括:
所述控制终端将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;
当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;
当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
优选地,所述步骤S40之后还包括:
所述dongle在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。
优选地,所述步骤S40之后还包括:
所述dongle在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。
优选地,所述步骤S50之后还包括:
所述控制终端接收到所述RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。
此外,为实现上述目的,本发明还提供一种电视机内置dongle的性能检测方法,涉及至少一条生产线,每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器;同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,所述电视机内置dongle的性能检测方法包括:
步骤S10、电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;
步骤S20、所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若是,则转入步骤S30;否则转入步骤S40;
步骤S30、所述dongle与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;
步骤S40、所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;
步骤S50、所述dongle读取所述遥控器的RSSI值,并上报给所述控制终端;
步骤S60、所述控制终端根据所述RSSI值确定所述dongle的天线是否正常。
优选地,所述步骤S40之后还包括:
所述dongle在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。
优选地,所述步骤S40之后还包括:
所述dongle在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。
优选地,所述控制终端预设有dongle天线所对应的正常RSSI范围值;所述步骤S60具体包括:
所述控制终端将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;
当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;
当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
优选地,所述步骤S50之后还包括:
所述控制终端接收到所述RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。
此外,为实现上述目的,本发明还提供一种电视机内置dongle的性能检测系统,所述电视机的dongle性能检测系统包括:至少一条生产线,同一生产线的电视机dongle设置相同的ID,且不同于其他生产线的电视机dongle的ID;每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器;
所述控制终端,用于向对应的生产线进入检测工位的电视机下发检测指令;以及根据dongle上报的遥控器RSSI值确定所述dongle的天线是否正常;
所述电视机,用于在进入检测工位后,根据所述控制终端下发的检测指令,控制自身内置dongle进入检测模式;
所述dongle,用于在检测模式下判断自身是否为本生产线的第一个dongle;若否,则将与遥控器建立射频连接后读取的遥控器RSSI值上报给所述控制终端;若是,则与对应的遥控器对码,将自身的ID发送给所述遥控器,再将与遥控器建立射频连接后读取的遥控器RSSI值上报给所述控制终端;
所述遥控器,用于接收本生产线第一个dongle发送的ID,将所述ID作为本生产线所有dongle的公用ID存储;以及根据自身存储的公用ID与本生产线中的每个进入检测工位、且处于检测模式下的dongle建立射频连接。
优选地,所述dongle,还用于在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。
优选地,所述dongle,还用于在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。
优选地,所述控制终端预设有dongle天线所对应的正常RSSI范围值;
所述控制终端,具体还用于将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
优选地,所述控制终端,还用于在接收到所述dongle发送的RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。
本发明所提供的电视机的dongle性能检测方法和系统,通过为同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若否,所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;若是,则在与遥控器建立射频之前与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;所述dongle与遥控器建立射频连接之后读取所述遥控器的RSSI值,并上报给所述控制终端;所述控制终端根据所述RSSI值确定所述dongle的天线是否正常的方式,在检测电视机内置dongle与遥控器射频连接是否成功的基础上,能够检测到电视机内置dongle的天线是否正常,杜绝了dongle与遥控器对码过程的对码串扰的现象发生,大大缩减了整条生产线的对码时间,极大地提高了电视机内置dongle性能检测的效率。
附图说明
图1为本发明的电视机内置dongle的性能检测方法一实施例的流程示意图;
图2为图1中步骤S106的具体细化流程示意图;
图3为本发明的电视机内置dongle的性能检测系统一实施例的结构示意图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
以下结合说明书附图对本发明的优选实施例进行说明,应当理解,此处所描述的优选实施例仅用于说明和解释本发明,并不用于限定本发明,并且在不冲突的情况下,本发明中的实施例及实施例中的特征可以相互组合。
本发明提供一种电视机内置dongle的性能检测方法。本发明的电视机内置dongle的性能检测方法涉及至少一条生产线,每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器。同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID,即不同生产线设置的dongle的ID不同。参照图1,图1为本发明的电视机内置dongle的性能检测方法一实施例的流程示意图。针对一条生产线,所述电视机内置dongle的性能检测方法包括:
步骤S101、电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式。
本实施例中,所述控制终端根据用户输入的生产线选择指令,确定自身控制的生产线。由于不同生产线设置的dongle的ID不同,因此可以将生产线设置的dongle的ID输入控制终端,以此作为生产线选择指令,控制终端接收到所述dongle的ID后便可确定当前控制的生产线。此时控制终端需要实时监控当前控制的生产线,一旦该生产线有电视机进入检测工位,则向该电视机下发检测指令。
步骤S102、所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若是,则转入步骤S103;否则转入步骤S104。
步骤S103、所述dongle与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储。
本实施例中,由于同一生产线中的所有电视机内置的dongle的ID相同,因此本生产线的第一个dongle发送的ID可以看作是本生产线中每个dongle的ID,即可以将第一个dongle发送的ID作为本生产线所有dongle的公用ID。
步骤S104、所述遥控器根据自身存储的公用ID与所述dongle建立射频连接。
本实施例中,由于一条生产线中所有电视机内置的dongle均设置相同的ID。因此本生产线的第一个dongle与遥控器对码将自身的ID发送给遥控器,相当于遥控器得到了本生产线的每个dongle的ID。因此本生产线第一个dongle以后的dongle无需通过对码将自身的ID发送给遥控器。遥控器可以根据本生产线第一个dongle发送的ID,与本生产线中每个进入检测工位,且进入检测模式的dongle建立射频连接。
步骤S105、所述dongle读取所述遥控器的RSSI值,并上报给所述控制终端。
本实施例中,所述步骤S104之后还包括如下处理:判断遥控器与所述dongle射频连接是否成功;若失败,则所述dongle在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。若成功,所述dongle在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。本实施例中,由于所述dongle在与遥控器建立射频连接成功后,会立刻读取与之射频连接的遥控器的RSSI值。并将所读取的RSSI值上报给控制终端。因此,本发明中所述dongle可以将读取的RSSI值作为射频连接成功消息上报给控制终端。
步骤S106、所述控制终端根据所述RSSI值确定所述dongle的天线是否正常。
本实施例中,所述控制终端预设有dongle天线所对应的正常RSSI范围值。
其中,本实施例通过将多个功能正常dongle置于相同环境下进行多次测试,根据多次的测试结果确定所述正常RSSI范围值,即从该多个测试结果获取一个最小值X和一个最大值D,以[最小值X,最大值D]作为所述正常RSSI范围值。
参见图2,图2为图1中步骤S106的具体细化流程示意图。所述步骤S106具体处理如下:
步骤S1061、所述控制终端将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较。
步骤S1062、当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常。
步骤S1063、当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
上述电视机内置dongle的性能检测方法实施例中,在步骤S105之后还包括:所述控制终端接收到所述RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。即为本生产线下一dongle让出检测工位。其中控制dongle进入下一工位其实是控制该dongle对应的电视机进入下一工位,为本生产线下一台电视机让出检测工位。
以上电视机内置dongle的性能检测方法实施例中所涉及的控制终端与自身所控制的生产线中每台电视机通过串口连接,以实现相互间的数据通讯;每台电视机的自身主控芯片与内置的dongle芯片通过串口连接,以实现相互间数据通讯。
上述实施例所提供的电视机的dongle性能检测方法,通过为同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若否,所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;若是,则在与遥控器建立射频之前与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;所述dongle与遥控器建立射频连接之后读取所述遥控器的RSSI值,并上报给所述控制终端;所述控制终端根据所述RSSI值确定所述dongle的天线是否正常的方式,在检测电视机内置dongle与遥控器射频连接是否成功的基础上,能够检测到电视机内置dongle的天线是否正常,杜绝了dongle与遥控器对码过程的对码串扰的现象发生,大大缩减了整条生产线的对码时间,极大地提高了电视机内置dongle性能检测的效率。
本发明进一步提供一种电视机内置dongle的性能检测系统。参照图3,图3为本发明的电视机内置dongle的性能检测系统一实施例的结构示意图。在一实施例中,该所述电视机的dongle性能检测系统100包括:至少一条生产线,同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID,即不同生产线设置的dongle的ID不同。每条生产线包括:控制终端110、多台内置有dongle的电视机120、遥控器130。所述控制终端110,用于向对应的生产线进入检测工位的电视机120下发检测指令;以及根据所述dongle上报的遥控器RSSI值确定所述dongle的天线是否正常。所述电视机120,用于在进入检测工位后,根据所述控制终端下发的检测指令,控制自身内置dongle进入检测模式。所述dongle,用于在检测模式下判断自身是否为本生产线的第一个dongle;若否,则将与遥控器建立射频连接后读取的遥控器130的RSSI值上报给所述控制终端;若是,则与对应的遥控器对码,将自身的ID发送给所述遥控器,再将与遥控器建立射频连接后读取的遥控器130的RSSI值上报给所述控制终端。所述遥控器130,用于接收本生产线第一个dongle发送的ID,将所述ID作为本生产线所有dongle121的公用ID存储;以及根据自身存储的公用ID与本生产线中的每个进入检测工位、且处于检测模式下的dongle建立射频连接。
本实施例中,所述控制终端110根据用户输入的生产线选择指令,确定自身控制的生产线。由于不同生产线设置的dongle的ID不同,因此可以将生产线设置的dongle的ID输入控制终端110,以此作为生产线选择指令,控制终端110接收到所述dongle的ID后便可确定当前控制的生产线。此时控制终端110需要实时监控当前控制的生产线,一旦该生产线有电视机120进入检测工位,则向该电视机120下发检测指令。
本实施例中,由于同一生产线中的所有电视机120内置的dongle的ID相同,因此本生产线的第一个dongle发送的ID可以看作是本生产线中每个dongle的ID,即可以将第一个dongle发送的ID作为本生产线所有dongle的公用ID。同时由于一条生产线中所有电视机内置的dongle均设置相同的ID。因此本生产线的第一个dongle与遥控器对码将自身的ID发送给遥控器,相当于遥控器得到了本生产线的每个dongle的ID。因此本生产线第一个dongle以后的dongle无需通过对码将自身的ID发送给遥控器。遥控器可以根据本生产线第一个dongle发送的ID,与本生产线中每个进入检测工位,且进入检测模式的dongle建立射频连接。
上述电视机内置dongle的性能检测系统100实施例中,所述dongle,还用于在建立与所述遥控器建立射频连接操作之后,判断与所述遥控器射频连接是否成功;在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息;以及在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。本实施例中,由于所述dongle在与遥控器建立射频连接成功后,会立刻读取与之射频连接的遥控器的RSSI值。并将所读取的RSSI值上报给控制终端。因此,本发明中所述dongle可以将读取的RSSI值作为射频连接成功消息上报给控制终端。
上述电视机内置dongle的性能检测系统100实施例中,所述控制终端110预设有dongle天线所对应的正常RSSI范围值。所述控制终端,具体还用于将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
其中,本实施例通过将多个功能正常dongle置于相同环境下进行多次测试,根据多次的测试结果确定所述正常RSSI范围值,即从该多个测试结果获取一个最小值X和一个最大值D,以[最小值X,最大值D]作为所述正常RSSI范围值。
上述电视机内置dongle的性能检测系统100实施例中,所述控制终端110,还用于在接收到所述dongle发送的RSSI值后,向所述dongle发送检测模式退出指令,使控制所述dongle退出检测模式,并控制所述dongle进入下一工位。即为本生产线下一dongle让出检测工位。其中控制dongle进入下一工位其实是控制该dongle对应的电视机进入下一工位,为本生产线下一台电视机让出检测工位。
以上电视机内置dongle的性能检测系统100实施例中,所述控制终端110与自身所控制的生产线中每台所述电视机120通过串口连接,以实现相互间的数据通讯;每台所述电视机120的自身主控芯片与内置的dongle芯片通过串口连接,以实现相互间数据通讯。
上述实施例所提供的电视机的dongle性能检测系统100,通过为同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若否,所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;若是,则在与遥控器建立射频之前与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;所述dongle与遥控器建立射频连接之后读取所述遥控器的RSSI值,并上报给所述控制终端;所述控制终端根据所述RSSI值确定所述dongle的天线是否正常的方式,在检测电视机内置dongle与遥控器射频连接是否成功的基础上,能够检测到电视机内置dongle的天线是否正常,杜绝了dongle与遥控器对码过程的对码串扰的现象发生,大大缩减了整条生产线的对码时间,极大地提高了电视机内置dongle性能检测的效率。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明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,均同理包括在本发明的专利保护范围内。

Claims (14)

  1. 一种电视机内置dongle的性能检测方法,其特征在于,涉及至少一条生产线,每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器;同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,所述电视机内置dongle的性能检测方法包括:
    步骤S10、电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;
    步骤S20、所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若是,则转入步骤S30;否则转入步骤S40;
    步骤S30、所述dongle与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;
    步骤S40、所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;
    步骤S50、所述dongle读取所述遥控器的RSSI值,并上报给所述控制终端;
    步骤S60、所述控制终端根据所述RSSI值确定所述dongle的天线是否正常;其中,
    所述控制终端预设有dongle天线所对应的正常RSSI范围值,所述正常RSSI范围值由多个功能正常dongle置于相同环境下进行多次测试,并根据多次的测试结果确定的RSSI范围值;所述步骤S60具体包括:
    所述控制终端将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;
    当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;
    当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
  2. 根据权利要求1所述的电视机内置dongle的性能检测方法,其特征在于,所述步骤S40之后还包括:
    所述dongle在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。
  3. 根据权利要求1所述的电视机内置dongle的性能检测方法,其特征在于,所述步骤S40之后还包括:
    所述dongle在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。
  4. 根据权利要求1所述的电视机内置dongle的性能检测方法,其特征在于,所述步骤S50之后还包括:
    所述控制终端接收到所述RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。
  5. 一种电视机内置dongle的性能检测方法,其特征在于,涉及至少一条生产线,每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器;同一生产线的电视机内置dongle设置相同的ID,且不同于其他生产线的电视机内置dongle的ID;针对一条生产线,所述电视机内置dongle的性能检测方法包括:
    步骤S10、电视机进入检测工位后,根据控制终端下发的检测指令,控制自身内置dongle进入检测模式;
    步骤S20、所述dongle在检测模式下判断自身是否为本生产线第一个dongle;若是,则转入步骤S30;否则转入步骤S40;
    步骤S30、所述dongle与对应的遥控器对码,将自身ID发送给所述遥控器,使所述遥控器将所述ID作为本生产线所有dongle的公用ID存储;
    步骤S40、所述遥控器根据自身存储的公用ID与所述dongle建立射频连接;
    步骤S50、所述dongle读取所述遥控器的RSSI值,并上报给所述控制终端;
    步骤S60、所述控制终端根据所述RSSI值确定所述dongle的天线是否正常。
  6. 根据权利要求5所述的电视机内置dongle的性能检测方法,其特征在于,所述步骤S40之后还包括:
    所述dongle在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。
  7. 根据权利要求5所述的电视机内置dongle的性能检测方法,其特征在于,所述步骤S40之后还包括:
    所述dongle在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。
  8. 根据权利要求5任一项所述的电视机内置dongle的性能检测方法,其特征在于,所述控制终端预设有dongle天线所对应的正常RSSI范围值;所述步骤S60具体包括:
    所述控制终端将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;
    当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;
    当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
  9. 根据权利要求8所述的电视机内置dongle的性能检测方法,其特征在于,所述步骤S50之后还包括:
    所述控制终端接收到所述RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。
  10. 一种电视机内置dongle的性能检测系统,其特征在于,所述电视机的dongle性能检测系统包括:至少一条生产线,同一生产线的电视机dongle设置相同的ID,且不同于其他生产线的电视机dongle的ID;每条生产线包括:控制终端、多台内置有dongle的电视机、遥控器;
    所述控制终端,用于向对应的生产线进入检测工位的电视机下发检测指令;以及根据dongle上报的遥控器RSSI值确定所述dongle的天线是否正常;
    所述电视机,用于在进入检测工位后,根据所述控制终端下发的检测指令,控制自身内置dongle进入检测模式;
    所述dongle,用于在检测模式下判断自身是否为本生产线的第一个dongle;若否,则将与遥控器建立射频连接后读取的遥控器RSSI值上报给所述控制终端;若是,则与对应的遥控器对码,将自身的ID发送给所述遥控器,再将与遥控器建立射频连接后读取的遥控器RSSI值上报给所述控制终端;
    所述遥控器,用于接收本生产线第一个dongle发送的ID,将所述ID作为本生产线所有dongle的公用ID存储;以及根据自身存储的公用ID与本生产线中的每个进入检测工位、且处于检测模式下的dongle建立射频连接。
  11. 根据权利要求10所述的电视机内置dongle的性能检测系统,其特征在于,
    所述dongle,还用于在与所述遥控器射频连接失败后,向所述控制终端上报射频连接失败信息。
  12. 根据权利要求10所述的电视机内置dongle的性能检测系统,其特征在于,
    所述dongle,还用于在与所述遥控器射频连接成功后,向所述控制终端上报射频连接成功信息。
  13. 根据权利要求10任一项所述的电视机内置dongle的性能检测系统,其特征在于,
    所述控制终端预设有dongle天线所对应的正常RSSI范围值;
    所述控制终端,具体还用于将所述dongle上报的RSSI值与所述正常RSSI范围值进行比较;当所述RSSI值处于所述正常RSSI范围值内,则确认所述dongle的天线正常;当所述RSSI值不处于所述正常RSSI范围值内,则确认所述dongle的天线异常。
  14. 根据权利要求13所述的电视机内置dongle的性能检测系统,其特征在于,
    所述控制终端,还用于在接收到所述dongle发送的RSSI值后,向所述dongle发送检测模式退出指令,使所述dongle退出检测模式,并控制所述dongle进入下一工位。
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