提高配电系统稳定性的发电机预测控制

Lin Wang, Qingxiang Jin, F. Chen, R. Cheung
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引用次数: 5

摘要

在过去的三十年里,人们对大型电力系统的稳定性进行了深入的研究。然而,在有私人发电存在的情况下,配电系统的稳定性几乎没有得到研究。随着新的政府放松管制政策对电力系统发电和交易的开放接入需求的增长,对配电系统稳定性的关注迅速增加。本文提出了一种基于步进预测控制方法的发电机励磁系统自适应控制方法,以提高配电系统特别是弱互联配电系统的动态稳定性。这种预测控制基于性能指标的最小化,该指标被定义为四个关键因素的加权组合:发电机终端电压与其参考电压的偏差;机械和电气扭矩的差异;转子转速增量;和转子磁链增量
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Predictive Generator Control for Improvement of Power Distribution System Stability
The stability of large-scale power systems has been well studied in the past three decades. However, the stability of power distribution systems in the presence of privately own generation virtually has not been studied. Power distribution system stability concerns increase rapidly as the demand for open access to the electric power systems for generation and trading under new government deregulation policies grows. This paper describes an adaptive control of generator excitation system, based on step-ahead predictive control method for improvement of the dynamic stability of power distribution systems, particularly the weakly inter-connected ones. This predictive control is based on the minimization of a performance index which is defined as a weighted combination of four key factors: deviation of generator terminal voltage from its reference voltage; difference of mechanical and electrical torques; increment of rotor speed; and increment of rotor flux linkage
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