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Economic system operation considering the cost of wear of transformers

机译:考虑变压器损耗成本的经济系统运行

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This paper presents the methodology for economic system operation considering the cost of wear of transformers. It is another application of the economic use of equipment, a theory in power systems already published by one of the authors, though, using the wear of cables as an example. According to this theory, economic use guides system operation, so that the cost of equipment wear is considered during minimization along the usual operating costs. In order for this purpose to be achieved a mathematical description of the connection between wear and use is needed. Power transformers are another costly part of equipment that wear can be expressed as a function of its operation. Similarly to our previous work concerning wear cost of cables, transformer wear is a process triggered by the supply of heat. The widely used reaction rate equation of Arrhenius is adopted for the calculation of insulation degradation rate due to transformer loading. In essence, it is based on the calculation of the probability that a collision of molecules participating in the degradation chemical reaction will actually result to a reaction with respect to temperature. If a cost due to wear is attached to the loading of transformers; the utilization of transformers can become a part of economic system operation control. A simplistic example demonstrates how the proposed theory can be used for the minimization of the overall cost of wear of transformers and generation.
机译:本文介绍了考虑变压器磨损成本的经济系统运行方法。这是设备经济使用的另一种应用,这是作者之一已经发表的电力系统理论,但以电缆的磨损为例。根据该理论,经济用途指导系统的运行,因此,在使设备磨损的成本降至最低的同时,也考虑了通常的运行成本。为了实现该目的,需要对磨损与使用之间的关系进行数学描述。电力变压器是设备的另一昂贵部分,其磨损可以表示为其操作的函数。与我们以前有关电缆的磨损成本的工作类似,变压器的磨损是由热源触发的过程。采用阿雷尼厄斯(Arrhenius)广泛使用的反应速率方程式来计算由于变压器负载而引起的绝缘劣化率。本质上,它基于对参与降解化学反应的分子的碰撞实际上将导致关于温度的反应的概率的计算。如果由于磨损而增加了变压器的负荷;变压器的使用可以成为经济系统运行控制的一部分。一个简单的例子说明了如何将所提出的理论用于使变压器的磨损和发电的总成本最小化。

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