Design of Virtual Synchronous Machine Utilizing Photovoltaic Energy System

Mohammed Saud Ali Al-Fadheeli, Baqer Saleh Mahdi Al-Rubaie, Y. Bouteraa
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Abstract

Power is produced primarily by huge synchronous generators (SGs) in traditional power systems, with the frequency of the grid determined by the rotating speed of the prime mover. If there are any rapid variations in demand, the rotor inertia property limits the frequency shifts and maintains the system steady. The electricity system is undergoing structural changes as a result of the rapid expansion of renewable energy sources (RES). Inverter-based RES systems do not have the same inertia as classic SG, and a rapid rate of change in frequency and voltage changes at the point of common coupling (PCC) may occur during the disturbance. As a consequence, widespread use of RES systems as the photo voltaic technique will reduce overall power system inertia. Energy storage in the form of "virtual synchronous generators" is presented as a way to enhance the frequency stability of a power grid with a high renewable energy penetration (VSG). With its capacity to control frequency and voltage, the VSG-based inverter power supply simulates the exterior look of a normal SG. VSG is utilized in this research to decrease DC-link voltage fluctuation and to stabilize the frequency and voltage of the power system. The PI controller values are adjusted and tuned by reducing the inaccuracy of the VSG controller's current controller and voltage regulator.
利用光伏能源系统的虚拟同步机设计
在传统的电力系统中,电力主要由大型同步发电机(SGs)产生,电网的频率由原动机的转速决定。如果有任何快速变化的需求,转子的惯性特性限制了频率的变化,并保持系统稳定。由于可再生能源(RES)的迅速发展,电力系统正在经历结构性变化。基于逆变器的RES系统不具有与经典SG相同的惯性,并且在干扰期间可能出现共耦合点(PCC)的频率和电压变化的快速变化率。因此,广泛使用可再生能源系统作为光伏技术将减少整个电力系统的惯性。以“虚拟同步发电机”形式的能量存储被认为是一种提高具有高可再生能源渗透率(VSG)电网频率稳定性的方法。凭借其控制频率和电压的能力,基于vsg的逆变电源模拟了正常SG的外观。本研究利用VSG来减小直流链路电压波动,稳定电力系统的频率和电压。通过减少VSG控制器的电流控制器和电压调节器的不准确性来调整和调谐PI控制器的值。
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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