一种基于一致性的动态安全重调度方法

Wenping Li, A. Bose
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引用次数: 69

摘要

在电力系统在线动态安全分析(DSA)中,当检测到突发事件的不稳定性时,预防控制或补救措施应成为其功能的一个组成部分。到目前为止,对在线补救行动的研究主要集中在重新安排发电,大多数建议的确定这种预防性控制的方法都是利用稳定能量裕度对发电机功率注入的敏感性。对于任何使用能量余量的方法,计算时间都是一个问题,并且提出了一种稍微不同的方法,通过最大化发电机的相干性而不使用灵敏度来确定控制动作。本文提出了一种新的基于相干性的发电重调度灵敏度方法。定义了不同的相干指标,并根据这些指标和能量余量指标对相关系数进行排序。由于相干指标始终是转子角度的函数,因此可以在积分过程的每个时间步长计算出相干指标(如最临界转子角度)相对于功率变化的灵敏度轨迹。本文建议将故障清除后不久计算的这些灵敏度用于重新调度发电。这些灵敏度的计算速度明显快于能量裕度灵敏度的计算速度。本文还通过几个不同系统的测试结果表明,用该方法实现的重调度提供了必要的补救措施。还需要注意的是,这种方法直观上更直接,因为它使用了受影响最严重的发电机角度的灵敏度来重新调度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A coherency based rescheduling method for dynamic security
For power system online dynamic security analysis (DSA), preventive control or remedial action should be an integral part of the function if instability for a contingency is detected. Research done so far in online remedial action has been in rescheduling generation and most of the suggested methods for determining such preventive control use the sensitivities of the stability energy margin to the generator power injections. For any approach using the energy margin, computation time is a concern and a somewhat different approach was suggested that determines control action by maximizing coherency of the generators without the use of sensitivities. In this paper, a new coherency based sensitivity method is proposed for generation rescheduling. Different coherency indices have been defined and then compared by ranking the contingencies according to these indices as well as the energy margin index. Since the coherency indices are always functions of the rotor angles, the sensitivity trajectories of a coherency index, such as the most critical rotor angle, with respect to changes of generation can be calculated at every time step of the integration process. This paper suggests that these sensitivities calculated shortly after fault clearing be used for rescheduling the generation. The calculation of these sensitivities are obviously faster than the calculation of the energy margin sensitivities. This paper also shows, with test results using several different systems, that the rescheduling achieved by this method provides the necessary remedial action. It is also noted that this method is intuitively more direct as it uses the sensitivities of the worst affected generator angles for rescheduling.
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