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Contactless Thermal Online-Monitoring of Electrical Equipment Under Load at High Voltage to Determine the Load Level and Damage Avoidance

机译:非接触式热在线监控电气设备在负载下的高压下,以确定负载水平和损坏避免

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The meanwhile high age of the electric energy distribution in the industrialized countries as well as the avoidance of new investments, the target to reduce maintenance resources and to use the assets at the maximum efficiency, accelerate the desire for the implementation of online monitoring systems. One of the most important physical dimensions for the judgement of the condition of an electrical device is the temperature at the current path. Problematical, with the temperature monitoring is that the measuring places are often not directly accessible or on high voltage level, so that measurements need to be done contactless. Today new electronic components with miniaturized dimensions and low energy consumption allow very small design applications, so that the implementation inside high voltage equipment will be possible using of energy harvesting. The measurement of the temperature inside or at electrical equipment like switchgear, HRC fuses, GIS- or GIL-systems, cabinets, cable connections, cable joints or bushings allows the judgement of the load level and the estimation of the thermal stress of the insulation or contacts. Additional functionality will be generated when the ongoing current is measured together with the temperature. The analysis of both parameters, allows the estimation of e.g. contact's condition as well as the thermal condition of high voltage HRC fuses before these will explode due to aging cased by overheating. The detection of thermal stress due to short circuit current flow is possible too.
机译:与此同时,工业化国家的电能分布的高年时代以及避免新投资,目标是减少维护资源,并以最高效率使用资产,加快实施在线监测系统的愿望。用于判断电气设备条件的最重要的物理尺寸之一是当前路径处的温度。有问题的是,温度监测是测量位置通常不可直接访问或高电压电平,从而需要进行无接触的测量。如今,具有小型化尺寸和低能耗的新型电子元件允许非常小的设计应用,从而可以使用能量收集来实现高压设备内的实现。内或在类似开关设备,HRC熔丝,GIS-或GIL-系统,橱柜,电缆连接,电缆接头或套管电气设备的温度的测量允许负载电平的判断和绝缘体的热应力的估计或联系人。当持续电流与温度一起测量持续电流时,将产生附加功能。对两个参数的分析,允许估计例如估计。联系人的病情以及高压HRC保险丝的热状况,因为通过过热均匀,这些都会爆炸。由于短路电流流动的热应力也是可能的。

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