Transformer Aging due to High Penetrations of PV, EV Charging, and Energy Storage Applications

K. McBee
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引用次数: 18

Abstract

High penetrations of photovoltaic (PV) systems, energy storage (ES) devices, and electric vehicle (EV) charging may significantly affect the operational constraints of substation power transformers. In high penetrations these applications can flatten a transformer's daily load profile, which minimizes the cooling down period for the unit's paper insulation. Also, because these applications rely upon power electronics to interface with the electric grid, high penetrations can increase the volume of harmonic currents propagating through the distribution system, which can also impact transformer aging. Although the initial impact of PV and ES applications may reduce a unit's peak energy demand, long-term system planning and emergency operating conditions may require derating of existing capacity limits to prevent aging that impacts overall life expectancy. To identify transformer aging characteristics as a function of load profile and harmonic content, the authors developed a transformer transient model based upon the tested attributes of a 50MVA SPX Waukesha transformer and the modeling methods described in IEEE Std. C57.90 and IEEE Std. C57.110. Utilizing the model, the authors identified the relationship between aging, harmonic distortion, and load profile characteristics associated with high penetrations of PV, ES applications, and EV charging.
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由于光伏、电动汽车充电和储能应用的高渗透,变压器老化
光伏(PV)系统、储能(ES)设备和电动汽车(EV)充电的高渗透可能会显著影响变电站电力变压器的运行约束。在高渗透下,这些应用可以使变压器的日常负载曲线变平,从而最大限度地减少了单元纸绝缘的冷却时间。此外,由于这些应用依赖于电力电子设备与电网的接口,高渗透会增加通过配电系统传播的谐波电流的体积,这也会影响变压器的老化。虽然PV和ES应用的最初影响可能会降低机组的峰值能源需求,但长期系统规划和紧急运行条件可能需要降低现有容量限制,以防止影响总体预期寿命的老化。为了确定变压器老化特性作为负载分布和谐波含量的函数,作者基于50MVA SPX Waukesha变压器的测试属性和IEEE Std. C57.90和IEEE Std. C57.110中描述的建模方法建立了变压器暂态模型。利用该模型,作者确定了与光伏、ES应用和电动汽车充电的高渗透率相关的老化、谐波失真和负载剖面特征之间的关系。
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