CN114069868A - 一种停送电二维码扫描防误操作装置 - Google Patents
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Abstract
本发明涉及一种停送电二维码扫描防误操作装置,包括:刀闸锁具;刀闸锁具内设置有电磁开关,电磁开关连接有控制器,控制器通过第一无线通信模块与远程控制中心通信;该装置还包括手持终端,手持终端内设置有二维码扫描模块和第二无线通信模块,二维码扫描模块对设置在刀闸锁具上的二维码进行扫描,获取刀闸锁具和刀闸的ID编码;远程控制中心对手持终端发送的ID编码进行判断,判断接收到的ID编码所对应的刀闸锁具和刀闸是否为待操作的刀闸锁具和刀闸,如果为待操作的刀闸锁具和刀闸,则通过第一无线通信模块向控制器发送控制指令,控制器接收到指令后控制电磁开关打开,使得刀闸锁具处于解锁状态,刀闸锁具解锁后对刀闸进行操作。
Description
技术领域
本发明属于电力系统停送电操作技术领域,涉及一种防误操作装置,尤其是一种停送电二维码扫描防误操作装置。
背景技术
电力系统停送电操作过程中,经常因为人为因素或者设备因素造成误操作事件,一旦发生误操作将造成极为严重的后果,轻则用电客户停电损失,重则造成设备事故、人身伤害。
现有的防误操作装置采用机械机构或电脑钥匙配合专用锁具,操作人按提前演练的步骤进行操作,该系列装置安装成本高且经常发生锁具卡涩锈死,电脑钥匙损坏导致不能继续操作的情况,另外,由于设备情况复杂,人员水平不一,以往的防误操作装置需要专业培训并多次练习才能熟练应用。以上两点造成现场实际应用率不高,往往形同虚设造成误操作现象时有发生。此为现有技术的不足之处。
有鉴于此,本发明提供一种停送电二维码扫描防误操作装置;以解决现有技术中存在上述技术缺陷,是非常有必要的。
发明内容
本发明的目的在于,针对上述现有技术存在的缺陷,提供设计一种停送电二维码扫描防误操作装置及方法,以解决上述技术问题。
为实现上述目的,本发明给出以下技术方案:
一种停送电二维码扫描防误操作装置,包括:
刀闸锁具,所述的刀闸锁具用于锁闭刀闸,只有当刀闸锁具处于解锁状态时,才能够打开刀闸锁具对刀闸进行操作;
所述的刀闸锁具内设置有电磁开关,所述的电磁开关连接有控制器,所述的控制器还连接有第一无线通信模块,控制器通过第一无线通信模块与远程控制中心通信;
该装置还包括手持终端,手持终端内设置有二维码扫描模块和第二无线通信模块,所述的二维码扫描模块对设置在刀闸锁具上的二维码进行扫描,获取刀闸锁具和刀闸的ID编码,并将获取的ID编码通过第二无线通信模块发送至远程控制中心;
远程控制中心对手持终端发送的ID编码进行判断,判断接收到的ID编码所对应的刀闸锁具和刀闸是否为待操作的刀闸锁具和刀闸,如果为待操作的刀闸锁具和刀闸,则通过第一无线通信模块向控制器发送控制指令,控制器接收到指令后控制电磁开关打开,使得刀闸锁具处于解锁状态,刀闸锁具解锁后对刀闸进行操作。
作为优选,所述的控制器还连接有刀闸状态监测器,所述的刀闸状态监测器将监测到的刀闸状态通过第一无线通信模块传送至诚控制中心,以备远程控制中心对该刀闸状态进行更新。
作为优选,所述的控制器为ARM嵌入式控制器;控制精度更高。
作为优选,所述的刀闸状态监测器为位置检测传感器,采用位置检测传感器对刀闸的位置进行检测,以获取刀闸的状态数据信息。
作为优选,所述的控制器还连接有存储器,对控制器接收到的指令进行存储,以备后续查阅。
作为优选,所述的第一无线通信模块通过GPRS数据通信网络与远程控制中心进行数据通信。
作为优选,所述的第二无线通信模块通过GPRS数据通信网络与远程控制中心进行数据通信;GPRS数据通信网络覆盖范围广泛,并且数据传输安全。
作为优选,所述的第一无线通信模块为SIM卡通信模块。
作为优选,所述的第二无线通信模块为SIM卡通信模块;采用SIM卡通信模块,配合GPRS数据通信网络,能够快速安全的将数据进行传输,并且降低成本。
本发明的有益效果在于,通过本发明提供的技术方案,在对刀闸进行送电操作时,通过对刀闸锁具二维码进行扫描,以获取刀闸锁具和刀闸的ID编码,通过远程控制中心对ID编码进行确认后,方可解锁刀闸锁具以对刀闸进行操作;有效避免误操作的发生。此外,本发明设计原理可靠,结构简单,具有非常广泛的应用前景。
由此可见,本发明与现有技术相比,具有突出的实质性特点和显著地进步,其实施的有益效果也是显而易见的。
附图说明
图1是本发明提供的一种停送电二维码扫描防误操作装置的控制原理图。
其中,1-刀闸锁具,2-电磁开关,3-控制器,4-第一无线通信模块,5-远程控制中心,6-手持终端,7-二维码扫描模块,8-第二无线通信模块,9-刀闸状态监测器,10-存储器。
具体实施方式
下面结合附图并通过具体实施例对本发明进行详细阐述,以下实施例是对本发明的解释,而本发明并不局限于以下实施方式。
如图1所示,本实施例提供的一种停送电二维码扫描防误操作装置,包括:
刀闸锁具1,所述的刀闸锁具1用于锁闭刀闸,只有当刀闸锁具处于解锁状态时,才能够打开刀闸锁具对刀闸进行操作;
所述的刀闸锁具1内设置有电磁开关2,所述的电磁开关2连接有控制器3,所述的控制器3为ARM嵌入式控制器;控制精度更高。
所述的控制器3还连接有第一无线通信模块4,控制器通过第一无线通信模块4与远程控制中心5通信;所述的控制器3还连接有刀闸状态监测器9,所述的刀闸状态监测器9为位置检测传感器,采用位置检测传感器对刀闸的位置进行检测,以获取刀闸的状态数据信息。
所述的刀闸状态监测器9将监测到的刀闸状态通过第一无线通信模块4传送至诚控制中心,以备远程控制中心5对该刀闸状态进行更新。
该装置还包括手持终端6,手持终端6内设置有二维码扫描模块7和第二无线通信模块8,所述的二维码扫描模块7对设置在刀闸锁具上的二维码进行扫描,获取刀闸锁具和刀闸的ID编码,并将获取的ID编码通过第二无线通信模块8发送至远程控制中心5;所述的第一无线通信模块4通过GPRS数据通信网络与远程控制中心5进行数据通信;所述的第二无线通信模块8通过GPRS数据通信网络与远程控制中心5进行数据通信;GPRS数据通信网络覆盖范围广泛,并且数据传输安全。所述的第一无线通信模块为SIM卡通信模块,所述的第二无线通信模块为SIM卡通信模块;采用SIM卡通信模块,配合GPRS数据通信网络,能够快速安全的将数据进行传输,并且降低成本。
远程控制中心5对手持终端发送的ID编码进行判断,判断接收到的ID编码所对应的刀闸锁具和刀闸是否为待操作的刀闸锁具和刀闸,如果为待操作的刀闸锁具和刀闸,则通过第一无线通信模块4向控制器3发送控制指令,控制器3接收到指令后控制电磁开关2打开,使得刀闸锁具处于解锁状态,刀闸锁具解锁后对刀闸进行操作。所述的控制器3还连接有存储器10,对控制器接收到的指令进行存储,以备后续查阅。
以上公开的仅为本发明的优选实施方式,但本发明并非局限于此,任何本领域的技术人员能思之的没有创造性的变化,以及在不脱离本发明原理前提下所作的若干改进和润饰,都应落在本发明的保护范围内。
Claims (9)
1.一种停送电二维码扫描防误操作装置,其特征在于,包括:
刀闸锁具,所述的刀闸锁具用于锁闭刀闸,只有当刀闸锁具处于解锁状态时,才能够打开刀闸锁具对刀闸进行操作;
所述的刀闸锁具内设置有电磁开关,所述的电磁开关连接有控制器,所述的控制器还连接有第一无线通信模块,控制器通过第一无线通信模块与远程控制中心通信;
该装置还包括手持终端,手持终端内设置有二维码扫描模块和第二无线通信模块,所述的二维码扫描模块对设置在刀闸锁具上的二维码进行扫描,获取刀闸锁具和刀闸的ID编码,并将获取的ID编码通过第二无线通信模块发送至远程控制中心;
远程控制中心对手持终端发送的ID编码进行判断,判断接收到的ID编码所对应的刀闸锁具和刀闸是否为待操作的刀闸锁具和刀闸,如果为待操作的刀闸锁具和刀闸,则通过第一无线通信模块向控制器发送控制指令,控制器接收到指令后控制电磁开关打开,使得刀闸锁具处于解锁状态,刀闸锁具解锁后对刀闸进行操作。
2.根据权利要求1所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的控制器还连接有刀闸状态监测器,所述的刀闸状态监测器将监测到的刀闸状态通过第一无线通信模块传送至诚控制中心。
3.根据权利要求2所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的控制器为ARM嵌入式控制器。
4.根据权利要求3所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的刀闸状态监测器为位置检测传感器。
5.根据权利要求4所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的控制器还连接有存储器。
6.根据权利要求5所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的第一无线通信模块通过GPRS数据通信网络与远程控制中心进行数据通信。
7.根据权利要求6所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的第二无线通信模块通过GPRS数据通信网络与远程控制中心进行数据通信。
8.根据权利要求7所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的第一无线通信模块为SIM卡通信模块。
9.根据权利要求8所述的一种停送电二维码扫描防误操作装置,其特征在于,所述的第二无线通信模块为SIM卡通信模块。
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