CN111614778A - 基于云平台的测试设备远程管控方法 - Google Patents

基于云平台的测试设备远程管控方法 Download PDF

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CN111614778A
CN111614778A CN202010463873.1A CN202010463873A CN111614778A CN 111614778 A CN111614778 A CN 111614778A CN 202010463873 A CN202010463873 A CN 202010463873A CN 111614778 A CN111614778 A CN 111614778A
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calibrator
temperature controller
main transformer
cloud platform
pressure gauge
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王柯
刘杰
李志强
王晓斌
苏峰
阿力木江·萨米
曾志迅
杨计强
霍佑军
杨梦彬
李伟
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State Grid Xinjiang Electric Power Co Ltd Aksu Power Supply Co
State Grid Corp of China SGCC
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Abstract

本发明公开了一种基于云平台的测试设备远程管控方法,其能够自动化的实现测试设备的检测报告的可靠统一电子化管控。本发明包含以下步骤:(1)为继电器校验仪、主变温控器校验仪和压力表校验仪设置唯一的RFID有源标签;(2)为继电器校验仪、主变温控器校验仪和压力表校验仪安装位置定位模块;(3)加装用于监控显示屏的摄像模组;(4)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于传输信息至远端云平台的通讯协议端口;(5)生成对应的检测试验过程的检测报告且摄像头获取对应的检测结果显示屏图像信息;(6)将步骤(5)获取的检测报告和检测结果显示屏图像信息上传至云平台的服务器。

Description

基于云平台的测试设备远程管控方法
技术领域
本发明涉及一种测试设备的管控方法,具体用于变电站的继电器校验仪、主变温控器校验仪和压力表检验仪的检测管控。
背景技术
目前新疆电力阿克苏公司已建成一些变电站设备检测的实验室,实现了对仪表的定期检定维护,保障了量值传递的可靠性。但实验室自动化测试程度水平不高,对温度表、SF6表、压力表等表计进行检定时只能采用手动控制的方式进行,同时试验报告的出具和管理没有实现网络信息自动化,需花费大量的时间、物力来完成此项工作。另一方面,随着日益扩大的电网建设和检修测试需求,电力检测设备使用更为频繁。目前检测设备仍然采用人工和纸质管理的落后方式,经常出现设备责权不清、设备丢失、寻找困难、送检不及时等问题,无法满足电力检测设备的日常管理及控制需求。目前市面上也没有很好的解决方法;
针对以上两方面问题,实验室专业人员迫切希望能通过先进的科学技术手段改变现状,实现测试设备远程管控及全自动测试功能。
发明内容
本发明所要解决的技术问题在于针对上述现有技术中的不足,提供一种基于云平台的测试设备远程管控方法,其能够自动化的实现测试设备的检测报告的可靠统一电子化管控。
为了达到上述目的,本发明采用以下技术方案予以实现:
基于云平台的测试设备远程管控方法,所述测试设备为用于检测变电站用SF6密度继电器、主变温控器和液体压力表的继电器校验仪、主变温控器校验仪和压力表校验仪;其特征在于:包含以下步骤:
(1)为继电器校验仪、主变温控器校验仪和压力表校验仪设置唯一的RFID有源标签;
(2)为继电器校验仪、主变温控器校验仪和压力表校验仪安装位置定位模块;
(3)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于监控显示屏的摄像模组;
(4)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于传输信息至远端云平台的通讯协议端口;
(5)继电器校验仪、主变温控器校验仪和压力表校验仪生成对应的检测试验过程的检测报告且摄像头获取对应的检测结果显示屏图像信息;
(6)继电器校验仪、主变温控器校验仪和压力表校验仪通过通讯协议端口经由网络层将步骤(5)获取的检测报告和检测结果显示屏图像信息上传至云平台的服务器。
作为本发明的一种优选上述方式:所述继电器校验仪、主变温控器校验仪和压力表校验仪上均设置有指纹识别模块;在步骤(5)之前还包含通过指纹识别开启对应测试设备的步骤。
作为本发明的一种优选上述方式:所述位置定位模块为GPS定位模块或者为北斗定位组件。
作为本发明的一种优选上述方式:还包含通过移动终端的APP远程访问所述云平台的服务器获取对应的检测报告和检测结果显示屏图像信息的步骤。
作为本发明的一种优选上述方式:所述主变温控器校验仪包含恒温油槽;所述检测报告包含恒温油槽的温度检测信息。
作为本发明的一种优选上述方式:数据信息传输采用国密安全算法执行。
本发明有益效果是:
本发明通过为现有检测设备加装摄像头采集显示屏检测结果,通过通讯端口将检测报告和显示屏图像一并发送至服务器进行存储和其他访问和使用功能;可实现对测试设备及试验报告的移动端远程管控。本发明提高了实验水平和工作质量,并能为后期的实验大数据工作提前做储备。SF6密度继电器、温控器全自动检测技术和自动电子台账管理在电力行业内尚未出现。
附图说明
图1为本发明的一种具体实施方式的结构示意图;
具体实施方式
下面结合附图及实施例描述本发明具体实施方式:
如图1所示,其示出了本发明的具体实施方式,如图1所示,本发明公开的基于云平台的测试设备远程管控方法,所述测试设备为用于检测变电站用SF6密度继电器、主变温控器和液体压力表的继电器校验仪、主变温控器校验仪和压力表校验仪;本发明的具体实施例包含以下步骤:
(1)为继电器校验仪、主变温控器校验仪和压力表校验仪设置唯一的RFID有源标签;
(2)为继电器校验仪、主变温控器校验仪和压力表校验仪安装位置定位模块;
(3)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于监控显示屏的摄像模组;
(4)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于传输信息至远端云平台的通讯协议端口;
(5)继电器校验仪、主变温控器校验仪和压力表校验仪生成对应的检测试验过程的检测报告且摄像头获取对应的检测结果显示屏图像信息;
(6)继电器校验仪、主变温控器校验仪和压力表校验仪通过通讯协议端口经由网络层将步骤(5)获取的检测报告和检测结果显示屏图像信息上传至云平台的服务器。
作为本发明的一种优选实施例:所述继电器校验仪、主变温控器校验仪和压力表校验仪上均设置有指纹识别模块;在步骤(5)之前还包含通过指纹识别开启对应测试设备的步骤。通过指纹识别模块可以管控使用者的信息,也就是使用者领用过程会强制被记录,是的领用记录得到可靠保存和采集。
作为本发明的一种优选实施例:所述位置定位模块为GPS定位模块或者为北斗定位组件。
作为本发明的一种优选实施例:还包含通过移动终端的APP远程访问所述云平台的服务器获取对应的检测报告和检测结果显示屏图像信息的步骤。
作为本发明的一种优选实施例:所述主变温控器校验仪包含恒温油槽;所述检测报告包含恒温油槽的温度检测信息。
作为本发明的一种优选实施例:数据信息传输采用国密安全算法执行。采用国密安全算法,建立安全防护应用体系,保证移动终端安全注册、加解密数据传输等安全技术管理。
上面结合附图对本发明优选实施方式作了详细说明,但是本发明不限于上述实施方式,在本领域普通技术人员所具备的知识范围内,还可以在不脱离本发明宗旨的前提下做出各种变化,这些变化涉及本领域技术人员所熟知的相关技术,这些都落入本发明专利的保护范围。
不脱离本发明的构思和范围可以做出许多其他改变和改型。应当理解,本发明不限于特定的实施方式,本发明的范围由所附权利要求限定。

Claims (6)

1.基于云平台的测试设备远程管控方法,所述测试设备为用于检测变电站用SF6密度继电器、主变温控器和液体压力表的继电器校验仪、主变温控器校验仪和压力表校验仪;其特征在于:包含以下步骤:
(1)为继电器校验仪、主变温控器校验仪和压力表校验仪设置唯一的RFID有源标签;
(2)为继电器校验仪、主变温控器校验仪和压力表校验仪安装位置定位模块;
(3)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于监控显示屏的摄像模组;
(4)为继电器校验仪、主变温控器校验仪和压力表校验仪加装用于传输信息至远端云平台的通讯协议端口;
(5)继电器校验仪、主变温控器校验仪和压力表校验仪生成对应的检测试验过程的检测报告且摄像头获取对应的检测结果显示屏图像信息;
(6)继电器校验仪、主变温控器校验仪和压力表校验仪通过通讯协议端口经由网络层将步骤(5)获取的检测报告和检测结果显示屏图像信息上传至云平台的服务器。
2.如权利要求1所述的基于云平台的测试设备远程管控方法,其特征在于:所述继电器校验仪、主变温控器校验仪和压力表校验仪上均设置有指纹识别模块;在步骤(5)之前还包含通过指纹识别开启对应测试设备的步骤。
3.如权利要求1所述的基于云平台的测试设备远程管控方法,其特征在于:所述位置定位模块为GPS定位模块或者为北斗定位组件。
4.如权利要求1所述的基于云平台的测试设备远程管控方法,其特征在于:还包含通过移动终端的APP远程访问所述云平台的服务器获取对应的检测报告和检测结果显示屏图像信息的步骤。
5.如权利要求1所述的基于云平台的测试设备远程管控方法,其特征在于:所述主变温控器校验仪包含恒温油槽;所述检测报告包含恒温油槽的温度检测信息。
6.如权利要求1所述的基于云平台的测试设备远程管控方法,其特征在于:数据信息传输采用国密安全算法执行。
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