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Reliability Analysis and Overload Capability Assessment of Oil-Immersed Power Transformers

机译:油浸式电力变压器的可靠性分析和过载能力评估

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Smart grids have been constructed so as to guarantee the security and stability of the power grid in recent years. Power transformers are a most vital component in the complicated smart grid network. Any transformer failure can cause damage of the whole power system, within which the failures caused by overloading cannot be ignored. This research gives a new insight into overload capability assessment of transformers. The hot-spot temperature of the winding is the most critical factor in measuring the overload capacity of power transformers. Thus, the hot-spot temperature is calculated to obtain the duration running time of the power transformers under overloading conditions. Then the overloading probability is fitted with the mature and widely accepted Weibull probability density function. To guarantee the accuracy of this fitting, a new objective function is proposed to obtain the desired parameters in the Weibull distributions. In addition, ten different mutation scenarios are adopted in the differential evolutionary algorithm to optimize the parameter in the Weibull distribution. The final comprehensive overload capability of the power transformer is assessed by the duration running time as well as the overloading probability. Compared with the previous studies that take no account of the overloading probability, the assessment results obtained in this research are much more reliable.
机译:近年来,为了确保电网的安全性和稳定性,已经构建了智能电网。电力变压器是复杂的智能电网中最重要的组件。任何变压器故障都可能导致整个电源系统损坏,在此范围内,由过载引起的故障不容忽视。这项研究为变压器过载能力评估提供了新的见解。绕组的热点温度是测量电力变压器过载能力的最关键因素。因此,计算热点温度以获得过载条件下电力变压器的持续运行时间。然后,将过载概率与成熟且广为接受的威布尔概率密度函数进行拟合。为了保证这种拟合的准确性,提出了一个新的目标函数来获得威布尔分布中的期望参数。此外,在差分进化算法中采用了十种不同的突变方案来优化威布尔分布中的参数。电力变压器的最终综合过载能力由持续运行时间以及过载概率来评估。与之前没有考虑过载可能性的研究相比,该研究获得的评估结果更加可靠。

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