利用实时仿真系统研究了配电线路负荷对空调电机失速的影响

K. Prabakar, D. Rizy, F. Li
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引用次数: 4

摘要

有研究表明,高季节能效比(SEER)空调压缩机电机在电压下降30%或更大的情况下会失速,例如在次传输故障期间。当这些马达失速时,它们消耗的电流和无功功率是额定电流和无功功率的两到三倍。电动机失速对整个电力系统的影响超过故障电压降的持续时间,造成全系统影响。这种现象被称为故障感应延迟电压恢复(FIDVR)或缓慢电压恢复(SVR)。该事件不仅受空调电机侵穿的影响,还受配电系统负荷组成的电压敏感性的影响。本研究利用实时数字模拟器(RTDS)中可用的单相感应电机模型来模拟这些高SEER电机的失速特性。本文还讨论了配电系统负荷对FIDVR的影响,并利用RTDS分析了这种影响。将一组机器模型与恒阻抗(Z),恒电流(I)和恒功率(P)负载模型一起安装在测试电源系统中,以研究这些负载对单相感应电机失速性质的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A study on the effect of distribution circuit loading on air conditioner motor stall using a real time simulator
It has been shown that high seasonal energy efficiency ratio (SEER) air conditioner compressor motors will stall during a voltage sag of 30 % or greater such as during a sub-transmission fault. When these motors stall, they draw two to three times their rated current and reactive power. The motor stall affects the entire power system beyond the duration of voltage drop of the fault resulting in a system-wide impact. This phenomenon is known as fault induced delayed voltage recovery (FIDVR) or slow voltage recovery (SVR). The FIDVR or SVR event is not only influenced by the air conditioner motor penetration but also by the voltage sensitivity of the load composition in the distribution system. In this study, the singlephase induction machine model that is available in the real time digital simulator (RTDS) is used to simulate the stall nature of these high SEER machines. This paper also addresses the effect of distribution system loads on FIDVR and analyzes the effect using RTDS. A group of the machine models are installed in a test power system along with constant impedance (Z), constant current (I), and constant power (P) load models to study the effect of these loads on the stall nature of the single phase induction machines.
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