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Series Dynamic Braking Resistor Based Protection Scheme for Inverter Based Distributed Generation System

机译:逆变器分布式发电系统的串联动态制动电阻保护方案

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High penetration of inverter based distributed generation (IBDG) in power system increases fault current level. However, according to new grid code fault current level must be kept within specified limit during contingencies in order to ease detrimental effect on power grid. This paper proposes series dynamic braking resistor (SDBR) based protection scheme for IBDG. SDBR is connected with the AC side of the IDBG to insert resistance during contingencies. Fault detection scheme is developed based on point of common coupling (PCC) current. DC link voltage controller of IBDG is developed with feedback mechanism such that the net active power exchange with DC link capacitor is zero. Inner current control strategy is developed for IBDG to transfer DG power to the grid. Different faults are applied in the system to show the effectiveness of the proposed SDBR based protection scheme. The proposed SDBR based control scheme have been found as an effective solution to limit the fault current for IBDG system as evident from the simulation results.
机译:基于逆变器的分布式发电(IBDG)在电力系统中的高渗透率会增加故障电流水平。但是,根据新的电网法规,在紧急情况下,故障电流水平必须保持在指定的限制内,以减轻对电网的不利影响。本文提出了基于串联动态制动电阻(SDBR)的IBDG保护方案。 SDBR与IDBG的AC侧相连,以在发生意外情况时插入电阻。基于公共耦合点(PCC)电流,开发了故障检测方案。 IBDG的直流环节电压控制器采用反馈机制开发,因此与直流环节电容器的净有功功率交换为零。为IBDG开发了内部电流控制策略,以将DG电源传输到电网。在系统中应用了不同的故障,以表明所提出的基于SDBR的保护方案的有效性。仿真结果表明,所提出的基于SDBR的控制方案是限制IBDG系统故障电流的有效解决方案。

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