Impacts of Communication Delay on the Performance of a Control Scheme to Minimize Power Fluctuations Introduced by Renewable Generation under Varying V2G Vehicle Pool Size

K. M. Liyanage, A. Yokoyama, Y. Ota, T. Nakajima, H. Taniguchi
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引用次数: 24

Abstract

The power outputs of non-conventional renewable sources are random and intermittent in nature. The integration of such sources in large numbers into existing power networks in the future could make the reliable and stable operation of power systems highly challenging. In this paper, the performance of a method based on balancing active power near real time, to reduce power fluctuations produced by renewable sources, is presented. The ability to exchange timely information and availability of adequate energy storage capacity are vital factors that determine the effectiveness of this method. Hence the performance, under varying communication delay and V2G vehicle pool size, of this method was evaluated by the authors. Three indices were defined and used to measure performance. The frequency of power balancing process was also varied during the study to accommodate longer information exchange delays. Results reveal that performance improves as communication delay and the period of control cycle are shortened. It was also observed that beyond a certain size of V2G pool, performance improvement reaches saturation. This indicates that, for a given system, there is a minimum V2G pool size requirement for studied method to deliver peak performance.
在不同V2G车辆池规模下,通信延迟对最小化可再生能源电力波动控制方案性能的影响
非常规可再生能源的电力输出具有随机性和间歇性。未来将大量此类电源整合到现有电网中,将对电力系统的可靠稳定运行提出极大的挑战。本文介绍了一种基于近实时平衡有功功率的方法的性能,以减少可再生能源产生的功率波动。及时交换信息的能力和足够的能量存储容量的可用性是决定该方法有效性的重要因素。在不同的通信延迟和V2G车辆池规模下,对该方法的性能进行了评价。定义并使用三个指标来衡量绩效。在研究过程中,权力平衡过程的频率也有所变化,以适应较长的信息交换延迟。结果表明,随着通信时延的缩短和控制周期的缩短,系统的性能有所提高。我们还观察到,超过一定大小的V2G池,性能提升达到饱和。这表明,对于给定的系统,所研究的方法有一个最小的V2G池大小要求,以提供峰值性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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