Development of a Droop Control Strategy for Flexible Operation of Distributed Generators

IF 0.7 Q4 COMPUTER SCIENCE, INFORMATION SYSTEMS
Salman Harasis
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引用次数: 1

Abstract

Droop control is one of the control strategies utilized to establish a simple, effective, and a communication-less power sharing between several distributed generators (DGs) in power systems and microgrid networks. In this paper, the control of an inverter-based system operating with the proposed droop control is developed and analyzed. The proposed droop control with its adjustable nonlinearity level aims to flexibly control the DGs in order to fulfill multiple objectives that aim to stabilize the operation of the sources and optimize the power sharing. These objectives can be achieved, simultaneously, as the droop characteristics generated under the proposed control cover all the possible operating points in the frequency-active power (f-P) and voltage- reactive power (V-Q) planes. The capability of the proposed control strategy to construct highly non-linear characteristics enables the DG to effectively meet different complex technical and economic constraints. The work carried out in this paper focuses on the f-P droop relation, and investigates the system performance under different physical and control parameters. The obtained results show that the proposed droop control is able to perform well under different operating conditions, shape the power sharing of the running DGs and stabilize the system performance.
分布式发电机组柔性运行下垂控制策略的研究
下垂控制是一种用于在电力系统和微电网中建立简单、有效和无通信的分布式发电机(dg)之间的电力共享的控制策略。本文对基于逆变器的系统的下垂控制进行了研究和分析。提出了一种非线性水平可调的下垂控制方法,其目的是灵活地控制dg,以实现稳定电源运行和优化功率共享的多重目标。这些目标可以同时实现,因为在提议的控制下产生的下垂特性覆盖了频率-有功功率(f-P)和电压-无功功率(V-Q)平面上的所有可能的工作点。所提出的控制策略构建高度非线性特性的能力使DG能够有效地满足各种复杂的技术和经济约束。本文主要研究了f-P下垂关系,并研究了不同物理参数和控制参数下的系统性能。仿真结果表明,所提出的下垂控制方法在不同工况下均能实现良好的控制性能,并能形成运行中的dg的功率分配,稳定系统性能。
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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来源期刊
CiteScore
0.20
自引率
14.30%
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0
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