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Research on Power Supply Employed in Ices Real-Time Monitoring System of High-Voltage Transmission Lines

机译:电力电源研究高压输电线路实时监测系统

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The research on the real time monitoring of the transmission lines is one of the directions for the power grid technologies. Seeing that the terminals of data acquisition system (DAS) of the real time monitoring of the transmission lines had to be located on the top of the tower, they were always in an unattended state, which brought out a protrusive problem of the power supply. This paper described a sort of power supply system featured as a hybrid of capacitors and solar batteries. The design of this power supply device must consider some important factors, such as how to take advantage of solar energy as full as possible and isolate from the high voltage electromagnetic interference. There are also many concrete details in the design of this supply device featured as a hybrid of super capacitors and solar batteries. The capacity of capacitors and solar batteries should also be deliberated to guarantee the maintainable supply at least one week even in the overcast and rainy days. This paper brought out some opinions on the solutions of the problems mentioned above. Related simulations were done to prove the effect of this power supply system of the monitoring system for transmission lines. The result showed that a hybrid energy storing system can play a better performance than single entire energy storing device.
机译:对传输线的实时监测的研究是电网技术的方向之一。看到数据采集系统的终端(DAS)的实时监测的传输线必须位于塔顶的顶部,它们始终处于无人看管的状态,从而耗尽了电源的突出问题。本文描述了一种作为电容器和太阳能电池混合的电源系统。该电源装置的设计必须考虑一些重要因素,例如如何尽可能充分利用太阳能并与高压电磁干扰隔离。该供应装置的设计中还有许多具体的细节,其特色是超级电容器和太阳能电池的混合动力。电容器和太阳能电池的容量也应刻意,以确保即使在阴云密布和下雨天内至少有一周的可维护供应。本文对上述问题的解决方案提出了一些意见。完成了相关模拟,以证明这种电源系统的输电线路监控系统的影响。结果表明,混合能量存储系统可以比单个整个能量存储装置发挥更好的性能。

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