多端口自主可重构太阳能电站(MARS)的虚拟同步发电机控制

Jiuping Pan, R. Nuqui, S. Debnath, Phani R. V. Marthi, Qianxue Xia
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引用次数: 0

摘要

多端口自主可重构太阳能电站(MARS)是将太阳能光伏(PV)和储能系统(ESS)集成到传输交流(ac)电网和高压直流(HVdc)链路的集成概念。集成开发结合了先进的控制方法,以提供增强的电网辅助服务,如快速频率响应和动态电压支持。本文讨论了MARS的虚拟同步发电机(VSG)控制算法。所提出的基于vsg的控制能够增强光伏和ESS混合电厂的综合惯性响应和灵活的频率响应特性,以满足电网辅助服务要求。多端口电力电子接口允许从MARS到本地传输交流电网和通过HVdc链接远程电网的受控应急电源支持。利用Simulink中的MARS降阶模型验证了VSG控制的性能。讨论了火星轨道系统网格辅助服务能力的估计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Virtual Synchronous Generator Control of Multi-port Autonomous Reconfigurable Solar Plants (MARS)
Multi-port autonomous reconfigurable solar power plant (MARS) is an integrated concept for integration of solar photovoltaic (PV) and energy storage systems (ESS) to transmission alternating current (ac) grid and high-voltage direct current (HVdc) links. The integrated development incorporates advanced control methods to provide enhanced grid ancillary services such as fast frequency responses and dynamic voltage support. In this paper, the virtual synchronous generator (VSG) control algorithm of MARS is discussed. The proposed VSG-based control enables enhanced synthetic inertial response and flexible frequency response characteristics of hybrid PV and ESS power plants in accordance with grid ancillary service requirements. Multi-port power electronics interface allows controlled emergency power support from MARS to local transmission ac grid and remote grid through the HVdc link. The performance of VSG control is validated using a reduced-order model of MARS in Simulink. Methods for estimating grid ancillary service capabilities of MARS are also discussed.
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