Tie-Line Power and Frequency Control of Electric Power Systems - Part II [includes discussion]

C. Concordia, L. K. Kirchmayer
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引用次数: 82

Abstract

In a previous paper [ibid., vol. 72, pt. III, June 1953, pp. 562-71], the authors presented the results of a study of the performance of two interconnected steam-electric power-generating areas as affected by frequency and tie-line power controllers. The present paper extends this study to include hydroelectric power generating areas as well. As before, the object is to determine theoretically the best values of controller gains, that is, to find those controller settings that will result in best over-all system performance. The principal criterion of good performance is, also as before, the minimizing of any oscillations in tie-line power or system frequency resulting from load disturbances to either area. Thus, stability, rather than rapidity of response, is preferred, since the system actually is continually being disturbed by small and more or less random changes of load, rather than by the step load change used as a test disturbance in the study.
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电力系统的配线功率和频率控制。第2部分[包括讨论]
在之前的一篇论文中[同上,第72卷,第III页,1953年6月,第562-71页],作者介绍了两个相互连接的蒸汽发电区域受频率和联络线功率控制器影响的性能研究结果。本文将这一研究扩展到水力发电领域。和前面一样,目标是从理论上确定控制器增益的最佳值,也就是说,找到那些将导致最佳总体系统性能的控制器设置。和以前一样,性能良好的主要标准是使由负载扰动引起的接线功率或系统频率的振荡最小。因此,稳定性比响应速度更重要,因为系统实际上不断受到负载的小的或多或少随机变化的干扰,而不是被研究中用作测试干扰的阶跃负载变化。
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