FRT and Transient Stability Augmentation of Grid-Connected PV Station Using Virtual Synchronous Generator

M. Islam, M. Mannan, Md. Rifat Hazari
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Abstract

Due to the extensive integration of renewable energy sources (RESs), i.e., photovoltaic (PV) system, the future power system is developing into an inverter-based system from a dominated alternator-based power system. This massive penetration of inverter-based PV system reduced the system inertia and damping characteristics of the power grid, impacting the fault ride-through (FRT) capability and causes frequency instability. Modern grid codes require that PV systems should work in the same way as conventional power plants and assist the system during transient state. However, most of the conventional inverter control mechanisms failed to fulfill the requirements of grid codes, especially when the penetration ratio of the PV system is close to the conventional unit. Therefore, this paper proposes a virtual synchronous generator (VSG) control mechanism of PV system inverter to augment FRT competency and frequency stability. The proposed VSG control system mimics the behavior of conventional power plants. To observe and evaluate the proposed controller behavior, simulation analyses were executed in the PSCAD/EMTDC software for both proposed and conventional controllers. The simulation results clearly indicate that the proposed VSG control system has sufficient damping characteristics to ensure FRT capability and frequency stability.       
利用虚拟同步发电机增强并网光伏电站的FRT和暂态稳定
由于可再生能源(RESs)即光伏(PV)系统的广泛集成,未来的电力系统正从以交流发电机为主的电力系统向以逆变器为主的电力系统发展。基于逆变器的光伏系统的大规模渗透降低了电网的系统惯性和阻尼特性,影响了故障穿越(FRT)能力并导致频率不稳定。现代电网规范要求光伏发电系统应以与传统电厂相同的方式工作,并在暂态状态下辅助系统。然而,传统的逆变器控制机制大多不能满足电网规范的要求,特别是当光伏系统的渗透比接近常规机组时。为此,本文提出了一种光伏系统逆变器的虚拟同步发电机(VSG)控制机制,以增强其FRT能力和频率稳定性。所提出的VSG控制系统模拟了传统电厂的运行行为。为了观察和评估所提出的控制器的行为,在PSCAD/EMTDC软件中对所提出的控制器和传统控制器进行了仿真分析。仿真结果清楚地表明,所提出的VSG控制系统具有足够的阻尼特性,以保证FRT能力和频率稳定性。
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