Distributed bounded integral control for multimachine power systems

I. G. Perantonis, Zaint A. Alexakis, George C. Konstantopoulos, A. Alexandridis
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引用次数: 1

Abstract

In this paper, the problem of frequency control in multimachine power networks is investigated in a distributed manner. Taking as an example a cyber-physical architecture of the IEEE 68 bus, 16 machine power system, a new distributed bounded integral control (DiBIC) scheme is proposed to achieve frequency restoration to the rated value and power sharing among the 16 generators with only neighbour-to-neighbour communication, while maintaining the mechanical torque of each generator within predefined limits. The boundedness of the mechanical torque inputs is analytically proven independently of the distributed control tasks and without the need for saturation mechanisms that might lead the power system to instability. To verify the proposed DiBIC performance, the IEEE 68 bus network is simulated under a change of the load demand and tested under both the proposed and the conventional distributed integral control with saturation.
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多机电力系统的分布式有界积分控制
本文以分布式方式研究了多机电网的频率控制问题。以IEEE 68总线16机电力系统的网络物理结构为例,提出了一种新的分布式有界积分控制(DiBIC)方案,实现了16台发电机之间的频率恢复到额定值和功率共享,只需要邻居之间的通信,同时使每台发电机的机械转矩保持在预定的范围内。分析证明了机械转矩输入的有界性独立于分布式控制任务,并且不需要可能导致电力系统不稳定的饱和机制。为了验证所提出的DiBIC的性能,对负荷需求变化下的IEEE 68总线网络进行了仿真,并对所提出的DiBIC和传统的带饱和的分布式积分控制进行了测试。
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