Application of non-Euclidean metric in the electric power industry for reduction of measurement uncertainty

S. Katsyv, V. Kukharchuk, V. Madyarov, V. Kucheruk, P.I Kulakov, M.L. Hribov
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Abstract

The paper proposes the use of the non-Euclidean metric to reduce the uncertainty that occurs when measuring voltage for the tasks of ongoing continuous control of electric power consumption in large, branched high-voltage electric networks. The problem is that for continuous control of electric power consumption, it is necessary to install the active and reactive power measuring equipment in each node of the electric network (at each substation) and to ensure the transmission of measurement information to dispatching control centers. For countries with large electric networks, long distances between electric grid nodes and dispatch control centers, this requires huge capital costs. Therefore, it is advisable to place equipment for measuring electric power and voltage only in individual nodes of the electrical network, and then calculate the parameters of the remaining nodes based on Kirchhoff's laws. But at the same time, there is a significant measurement uncertainty, because the complex value of the voltage is usually not measured, only the modulus of the voltage values is used for the calculation. The use of non-Euclidean metrics provides the reduction of the input data uncertainty, which are necessary to control the consumption of electric power in each node of the electric network.
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在电力行业应用非欧几里得度量法降低测量不确定性
本文提出使用非欧几里得度量来减少测量电压时出现的不确定性,以完成在大型、分支高压电网中对电力消耗进行持续控制的任务。问题在于,要对电力消耗进行持续控制,就必须在电网的每个节点(每个变电站)安装有功和无功功率测量设备,并确保将测量信息传输到调度控制中心。对于电网规模较大、电网节点与调度控制中心之间距离较远的国家来说,这需要巨额的资金成本。因此,最好只在电网的个别节点上安装电力和电压测量设备,然后根据基尔霍夫定律计算其余节点的参数。但与此同时,由于通常不测量电压的复数值,只使用电压值的模数进行计算,因此存在很大的测量不确定性。使用非欧几里得度量法可以减少输入数据的不确定性,而输入数据的不确定性是控制电网各节点电力消耗所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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