WO2014047843A1 - 一种电性参数测量、记录的方法及装置 - Google Patents

一种电性参数测量、记录的方法及装置 Download PDF

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WO2014047843A1
WO2014047843A1 PCT/CN2012/082191 CN2012082191W WO2014047843A1 WO 2014047843 A1 WO2014047843 A1 WO 2014047843A1 CN 2012082191 W CN2012082191 W CN 2012082191W WO 2014047843 A1 WO2014047843 A1 WO 2014047843A1
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control device
sensitive control
measurement
touch sensitive
electrical parameters
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PCT/CN2012/082191
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English (en)
French (fr)
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袁剑敏
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深圳华盛昌机械实业有限公司
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Priority to PCT/CN2012/082191 priority Critical patent/WO2014047843A1/zh
Priority to CN2012800028519A priority patent/CN103180745A/zh
Publication of WO2014047843A1 publication Critical patent/WO2014047843A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R15/00Details of measuring arrangements of the types provided for in groups G01R17/00 - G01R29/00, G01R33/00 - G01R33/26 or G01R35/00
    • G01R15/12Circuits for multi-testers, i.e. multimeters, e.g. for measuring voltage, current, or impedance at will
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R1/00Details of instruments or arrangements of the types included in groups G01R5/00 - G01R13/00 and G01R31/00
    • G01R1/02General constructional details
    • G01R1/04Housings; Supporting members; Arrangements of terminals
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R19/00Arrangements for measuring currents or voltages or for indicating presence or sign thereof
    • G01R19/25Arrangements for measuring currents or voltages or for indicating presence or sign thereof using digital measurement techniques
    • G01R19/2503Arrangements for measuring currents or voltages or for indicating presence or sign thereof using digital measurement techniques for measuring voltage only, e.g. digital volt meters (DVM's)
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C17/00Arrangements for transmitting signals characterised by the use of a wireless electrical link
    • G08C17/02Arrangements for transmitting signals characterised by the use of a wireless electrical link using a radio link
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q9/00Arrangements in telecontrol or telemetry systems for selectively calling a substation from a main station, in which substation desired apparatus is selected for applying a control signal thereto or for obtaining measured values therefrom
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01RMEASURING ELECTRIC VARIABLES; MEASURING MAGNETIC VARIABLES
    • G01R1/00Details of instruments or arrangements of the types included in groups G01R5/00 - G01R13/00 and G01R31/00
    • G01R1/02General constructional details
    • G01R1/06Measuring leads; Measuring probes
    • G01R1/067Measuring probes
    • G01R1/06788Hand-held or hand-manipulated probes, e.g. for oscilloscopes or for portable test instruments
    • GPHYSICS
    • G08SIGNALLING
    • G08CTRANSMISSION SYSTEMS FOR MEASURED VALUES, CONTROL OR SIMILAR SIGNALS
    • G08C2201/00Transmission systems of control signals via wireless link
    • G08C2201/90Additional features
    • G08C2201/93Remote control using other portable devices, e.g. mobile phone, PDA, laptop
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2209/00Arrangements in telecontrol or telemetry systems
    • H04Q2209/40Arrangements in telecontrol or telemetry systems using a wireless architecture
    • H04Q2209/43Arrangements in telecontrol or telemetry systems using a wireless architecture using wireless personal area networks [WPAN], e.g. 802.15, 802.15.1, 802.15.4, Bluetooth or ZigBee
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04QSELECTING
    • H04Q2209/00Arrangements in telecontrol or telemetry systems
    • H04Q2209/80Arrangements in the sub-station, i.e. sensing device
    • H04Q2209/82Arrangements in the sub-station, i.e. sensing device where the sensing device takes the initiative of sending data
    • H04Q2209/823Arrangements in the sub-station, i.e. sensing device where the sensing device takes the initiative of sending data where the data is sent when the measured values exceed a threshold, e.g. sending an alarm

Definitions

  • the present invention relates to the field of electrical technologies, and in particular, to a method for measuring and recording electrical parameters.
  • the measurement of existing electrical parameters such as voltage, current, resistance, and capacitance is generally measured manually using a pointer multimeter or a digital multimeter, and the obtained measurement data is separately recorded. In this way, the measurement data is recorded, the modification is cumbersome, and in the dangerous situation such as measuring high pressure, the manual operation by the staff may cause danger.
  • the present invention adopts the following technical solution: a method for measuring and recording electrical parameters, and the method includes the following steps:
  • the touch sensitive control device establishes a wireless communication connection with the digital multimeter
  • the digital multimeter measures the specific electrical parameters of the measurement object, and transmits the measured data to the touch sensitive control device by wireless communication.
  • the touch sensitive control device names and stores the received measurement data.
  • the digital multimeter described in step S4 is configured to measure a specific electrical parameter of the measurement object according to the measurement signal sent by the touch sensitive control device;
  • step S4 continuously measures the specific electrical parameters of the measurement object, and transmits the data obtained by the continuous measurement to the touch sensitive control device by wireless communication, and the touch sensitive control device is in the form of a curve or a list.
  • the measurement data received is stored.
  • the touch sensitive control device presets a threshold value for a specific electrical parameter of the object to be measured, and when the received measurement data exceeds or falls below a threshold, the touch sensitive control device automatically issues an alarm sound. .
  • the touch sensitive control device pre-stores the electronic engineering drawings or/and photos of the object to be measured, and the received measurement data is named and stored corresponding to the electronic engineering drawings or/and photos.
  • the touch sensitive control device edits the measurement data stored in step S5) and selects a plurality of data generation curves or lists for analysis.
  • the touch sensitive control device records the GPS positioning information of the location where the measurement object is located while storing the measurement data received in step S5).
  • a device for measuring and recording electrical parameters comprising a digital multimeter and a touch sensitive control device, wherein the digital multimeter is wirelessly connected to the touch sensitive control device.
  • the digital multimeter includes Bluetooth, and the Bluetooth is electrically connected to a micro control module of a digital multimeter; the touch sensitive control device is an iPhone or an iPad
  • the beneficial effects of the present invention are: 1) In the dangerous occasions such as measuring high voltage, the digital multimeter test pen can be fixed at the detection position, the measuring personnel can remotely control the measurement of the multimeter, and the measurement is performed in a place more than ten meters away. Data, to ensure measurement security; 2), measurement data cloud backup, use the Internet to share in time, you can monitor the power status of each area in more remote and real-time; 3), the entire circuit detection and maintenance process can be recorded by construction project. Record the voltage, current, resistance, capacitance, etc. of each test point of the circuit board, share it with others to analyze the line fault and solve the problem together; 4) The user can input the threshold value (voltage, current, resistance, etc. of each test point) in advance. Capacitance threshold, etc.), so that there are any abnormalities beyond the threshold during the test, the touch sensitive control device will automatically send an alarm tone to remind the user to help the user to find the fault test point more easily.
  • the threshold value voltage, current, resistance, etc.
  • FIG. 1 is a block diagram showing the working flow of an electrical parameter measurement and recording method according to the present invention
  • FIG. 2 is a schematic block diagram of an electrical parameter measuring and recording apparatus according to the present invention.
  • a working flow diagram of an electrical parameter measurement and recording method begins at S1, and establishes a wireless communication connection between the touch sensitive control device and the digital multimeter; after S1, enters S2 and S3.
  • the touch sensitive control device starts the measurement, recording application and the digital multimeter to select the measurement object; continues to S4, S5, the digital multimeter measures the specific electrical parameters of the measurement object, and transmits the measured data through wireless communication.
  • S6 the touch sensitive control device names and stores the received measurement data.
  • Step 4 The digital multimeter measures the specific electrical parameters of the measurement object according to the measurement signal sent by the touch sensitive control device, and realizes the remote measurement of the electrical parameter.
  • step S4) the digital multimeter continuously measures the specific electrical parameters of the measurement object, and transmits the data obtained by the continuous measurement to the touch sensitive control device by wireless communication, and the touch sensitive control device receives the data in the form of a curve or a list.
  • the measurement data storage for users to further review, edit and analyze.
  • the touch sensitive control device presets a threshold value for a specific electrical parameter of the object to be measured, and when the received measurement data exceeds or falls below a threshold value, the touch sensitive control device automatically issues an alarm prompt tone, which is convenient. The user found the point of failure.
  • the touch sensitive control device pre-stores the electronic engineering drawings or/and photos of the object to be measured, and the received measurement data is named and stored corresponding to the electronic engineering drawings or/and photos, and the electronic engineering drawings can clearly display the respective test points.
  • the measurement data such as voltage, current, resistance, capacitance and other corresponding electronic engineering drawings or / and photos are named and stored, can be shared with others to analyze the line faults together, solve problems together; can also share test and maintenance experience with peers, learn from each other, Promote the development of auxiliary means technology in the field of circuit inspection and maintenance.
  • the touch sensitive control device edits the measurement data stored in step S5) and selects a plurality of data generation curves or lists for analysis.
  • the touch sensitive control device records the GPS positioning information of the location where the measurement object is located while storing the measurement data received in step S5), which is convenient for the user to use.
  • FIG. 2 it is a schematic block diagram of an electrical parameter measurement and recording device of the present invention, including a digital multimeter 21 and a touch sensitive control device 22, and the digital multimeter 21 is wirelessly connected to the touch sensitive control device 22.
  • the digital multimeter 21 includes Bluetooth, and the Bluetooth is electrically connected to the micro control module of the digital multimeter; the touch sensitive control device 22 is an iPhone or an iPad.
  • the digital multimeter 21 is connected to the iPhone or iPad via Bluetooth short-range wireless communication, and starts the measurement and recording application installed on the iPhone or iPad to measure and record electrical parameters.

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  • General Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Telephone Function (AREA)

Abstract

本发明涉及一种电性参数测量、记录的方法及装置,所述方法包括触敏控制装置与数字万用表建立无线通讯连接;触敏控制装置启动测量、记录应用程序;数字万用表选定测量对象;数字万用表对测量对象的具体电性参数进行测量,并通过无线通讯方式将测量获得的数据传输至触敏控制装置;触敏控制装置对所收到测量数据命名、存储。所述装置包括数字万用表与触敏控制装置,所述的数字万用表与触敏控制装置无线通讯连接。本发明使测量人员可以远程控制万用表测量,并且在十几米外的地方看测量数据,保证测量安全;测量所得数据云备份,利用互联网及时分享,可以在更远程实时监控各个地区的电力状况;在测试过程中有任何超出门限值的异常,触敏控制装置会自动发出报警音提醒用户,帮助用户更轻松的找出故障测试点。

Description

一种电性参数测量、记录的方法及装置
技术领域
本发明涉及电学技术领域,尤其涉及一种电性参数测量、记录的方法。
背景技术
现有的电性参数如电压、电流、电阻、电容的测量一般采用指针万用表或数字万用表手动方式测量,所得测量数据另行记录。此种方式测量数据记录、修改繁琐,并且在测量高压等危险场合,工作人员手工操作,有发生危险的可能。
发明内容
本发明的目的在于为克服现有技术的缺陷,而提供一种电性参数测量、记录的方法。
为实现上述目的,本发明采用以下技术方案:一种电性参数测量、记录的方法,所述的方法包括以下步骤:
S1)触敏控制装置与数字万用表建立无线通讯连接;
S2)触敏控制装置启动测量、记录应用程序;
S3)数字万用表选定测量对象;
S4)数字万用表对测量对象的具体电性参数进行测量,并通过无线通讯方式将测量获得的数据传输至触敏控制装置。
S5)触敏控制装置对所收到测量数据命名、存储。
S4)步骤所述的数字万用表依据收到触敏控制装置发出的测量信号,对测量对象的具体电性参数进行测量;
S4)步骤所述的数字万用表对测量对象的具体电性参数进行连续的测量,并通过无线通讯方式将连续测量获得的数据传输至触敏控制装置,触敏控制装置以曲线或列表的形式对所收到测量数据存储。
S5)步骤所述触敏控制装置就拟测量对象的具体电性参数预先设定门限值,其所收到的测量数据超出或低于门限值时,触敏控制装置自动发出报警提示音。
S5)步骤所述触敏控制装置对拟测量对象的电子工程图纸或/及照片预先存储,其所收到的测量数据对应电子工程图纸或/及照片命名并存储。
触敏控制装置对在 S5)步骤所存储的测量数据进行编辑,并选取多个数据生成曲线或列表进行分析。
触敏控制装置对在 S5)步骤所收到测量数据存储的同时,记录测量对象所在场所的GPS定位信息。
一种电性参数测量、记录的装置,包括数字万用表与触敏控制装置,所述的数字万用表与触敏控制装置无线通讯连接。
所述的数字万用表包括蓝牙,所述的蓝牙与数字万用表的微控制模块电连接;所述触敏控制装置为iPhone或iPad
本发明与现有技术相比的有益效果是:1)、在测高压等危险场合,可以把数字万用表表笔固定在检测位置,测量人员可以远程控制万用表测量,并且在十几米外的地方看测量数据,保证测量安全;2)、测量所得数据云备份,利用互联网及时分享,可以在更远程实时监控各个地区的电力状况;3)、可以用建工程的方式记录整个电路检测和维修的过程,记录线路版各个测试点的电压、电流、电阻、电容等等,分享给他人共同分析线路故障,一起解决问题;4)、用户可以事先输入各个测试点的门限值(电压,电流,电阻,电容门限等等),这样在测试过程中有任何超出门限值的异常,触敏控制装置会自动发出报警音提醒用户,帮助用户更轻松的找出故障测试点。
附图说明
图1为本发明一种电性参数测量、记录方法的工作流程框图;
图2为本发明一种电性参数测量、记录装置的原理框图。
具体实施方式
为了更充分理解本发明的技术内容,下面结合具体实施例对本发明的技术方案进一步介绍和说明。
如图1所示,本发明一种电性参数测量、记录方法的工作流程框图,本方法始于S1,在触敏控制装置与数字万用表建立无线通讯连接;在S1之后,进入到S2、S3,触敏控制装置启动测量、记录应用程序及数字万用表选定测量对象;继续进行到S4、S5,数字万用表对测量对象的具体电性参数进行测量,并通过无线通讯方式将测量获得的数据传输至触敏控制装置;之后进行到S6,触敏控制装置对所收到测量数据命名、存储。
在 S4)步骤数字万用表依据收到触敏控制装置发出的测量信号后,对测量对象的具体电性参数进行测量,实现电性参数的远程测量。
在S4)步骤数字万用表对测量对象的具体电性参数进行连续的测量,并通过无线通讯方式将连续测量获得的数据传输至触敏控制装置,触敏控制装置以曲线或列表的形式对所收到测量数据存储,方便使用者进一步查阅、编辑和分析。
在 S5)步骤触敏控制装置就拟测量对象的具体电性参数预先设定门限值,其所收到的测量数据超出或低于门限值时,触敏控制装置自动发出报警提示音,方便使用者发现故障点。
在 S5)步骤触敏控制装置对拟测量对象的电子工程图纸或/及照片预先存储,其所收到的测量数据对应电子工程图纸或/及照片命名并存储,电子工程图纸能够清楚显示各个测试点,测量数据如电压、电流、电阻、电容等对应电子工程图纸或/及照片命名并存储,可以分享给他人共同分析线路故障,一起解决问题;还可以跟同行分享检测维修经验,互相学习借鉴,促进电路检测维修领域辅助手段技术的发展。
触敏控制装置对在 S5)步骤所存储的测量数据进行编辑,并选取多个数据生成曲线或列表进行分析。
触敏控制装置对在 S5)步骤所收到测量数据存储的同时,记录测量对象所在场所的GPS定位信息,方便使用者使用。
如图2所示,为本发明一种电性参数测量、记录装置的原理框图,包括数字万用表21与触敏控制装置22,数字万用表21与触敏控制装置22无线通讯连接。
具体的,数字万用表21包括蓝牙,所述的蓝牙与数字万用表的微控制模块电连接;触敏控制装置22为iPhone或iPad。
数字万用表21与iPhone或iPad通过蓝牙短距离无线通讯连接,启动iPhone或iPad安装的测量、记录应用程序,实现电性参数的测量和记录。
以上所述仅以实施例来进一步说明本发明的技术内容,以便于读者更容易理解,但不代表本发明的实施方式仅限于此,任何依本发明所做的技术延伸或再创造,均受本发明的保护。

Claims (9)

  1. 一种电性参数测量、记录的方法,其特征在于,所述的方法包括以下步骤:
    S1 )触敏控制装置与数字万用表建立无线通讯连接;
    S2 )触敏控制装置启动测量、记录应用程序;
    S3 )数字万用表选定测量对象;
    S4 )数字万用表对测量对象的具体电性参数进行测量,并通过无线通讯方式将测量获得的数据传输至触敏控制装置;
    S5 )触敏控制装置对所收到测量数据命名、存储。
  2. 根据权利要求1所述的电性参数测量、记录的方法,其特征在于, S4)步骤所述的数字万用表依据收到触敏控制装置发出的测量信号,对测量对象的具体电性参数进行测量。
  3. 根据权利要求2所述的电性参数测量、记录的方法,其特征在于, S4)步骤所述的数字万用表对测量对象的具体电性参数进行连续的测量,并通过无线通讯方式将连续测量获得的数据传输至触敏控制装置,触敏控制装置以曲线或列表的形式对所收到测量数据存储。
  4. 根据权利要求1、2或3任一所述的电性参数测量、记录的方法,其特征在于, S5)步骤所述触敏控制装置就拟测量对象的具体电性参数预先设定门限值,其所收到的测量数据超出或低于门限值时,触敏控制装置自动发出报警提示音。
  5. 根据权利要求1、2或3任一所述的电性参数测量、记录的方法,其特征在于, S5)步骤所述触敏控制装置对拟测量对象的电子工程图纸或/及照片预先存储,其所收到的测量数据对应电子工程图纸或/及照片命名并存储。
  6. 根据权利要求1、2或3任一所述的电性参数测量、记录的方法,其特征在于,触敏控制装置对在 S5)步骤所存储的测量数据进行编辑,并选取多个数据生成曲线或列表进行分析。
  7. 根据权利要求1、2或3任一所述的电性参数测量、记录的方法,其特征在于,触敏控制装置对在 S5)步骤所收到测量数据存储的同时,记录测量对象所在场所的GPS定位信息。
  8. 一种电性参数测量、记录的装置,其特征在于:包括数字万用表与触敏控制装置,所述的数字万用表与触敏控制装置无线通讯连接。
  9. 根据权利要求8所述的电性参数测量、记录的装置,其特征在于:所述的数字万用表包括蓝牙,所述的蓝牙与数字万用表的微控制模块电连接;所述触敏控制装置为iPhone或iPad。
PCT/CN2012/082191 2012-09-27 2012-09-27 一种电性参数测量、记录的方法及装置 WO2014047843A1 (zh)

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