Three-phase self-excited induction generator driven by variable-speed prime mover for clean renewable energy utilizations and its terminal voltage regulation characteristics by static VAr compensator

T. Ahmed, E. Hiraki, M. Nakaoka, O. Noro
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引用次数: 33

Abstract

In this paper, the practical impedance approach steady-state analysis in the frequency domain of the three-phase self-excited induction generator (SEIG) with squirrel cage rotor is presented along with its operating performance evaluations. The three-phase SEIG is driven by a variable-speed prime mover (VSPM) such as a wind turbine for the clean alternative renewable energy in rural areas. The basic steady-state characteristics of the VSPM are considered in the three-phase SEIG approximate electro-mechanical equivalent circuit and the operating performances of the three-phase SEIG coupled by a VSPM in the steady-state analysis are evaluated and discussed on line under the conditions related to the speed changes of the prime mover and the electrical inductive load power variations with simple computation processing procedures. A three-phase SEIG prototype setup with a VSPM is implemented for the small-scale clean renewable and alternative energy utilizations. The experimental performance results give good agreements with those ones obtained from the simulation results. Furthermore, a PI controlled feedback closed-loop voltage regulation of the three-phase SEIG driven by the VSPM on the basis of the static VAr compensator (SVC) composed of the thyristor phase controlled reactor (TCR) in parallel with the thyristor switched capacitor (TSC) and the fixed excitation capacitor bank (FC) is designed and considered for the wind generation as a renewable power conditioner. The simulation analysis and experimental results obtained from the three-phase SEIG with SVC for its voltage regulation prove the practical effectiveness of the additional SVC with the PI controller-based feedback loop in the steady-state operations in terms of the fast response and the high performances.
清洁可再生能源利用用变速原动机驱动的三相自激感应发电机及其静态无功补偿器的端电压调节特性
本文介绍了鼠笼式转子三相自激感应发电机(SEIG)的频域实用阻抗法稳态分析方法,并对其运行性能进行了评价。三相SEIG由变速原动机(VSPM)驱动,如风力涡轮机,用于农村地区的清洁替代可再生能源。在三相SEIG近似机电等效电路中,考虑了VSPM的基本稳态特性,并通过简单的计算处理程序在线评估和讨论了与原动机转速变化和电感性负载功率变化有关的条件下,由VSPM耦合的三相SEIG在稳态分析中的工作性能。为实现小规模清洁可再生能源和替代能源的利用,实现了带VSPM的三相SEIG原型装置。实验结果与仿真结果吻合较好。基于晶闸管控相电抗器(TCR)与晶闸管开关电容器(TSC)和固定励磁电容器组(FC)并联组成的静态无功补偿器(SVC),设计了一种PI控制的VSPM驱动的三相SEIG反馈闭环电压调节系统,用于风力发电作为可再生电力调节器。仿真分析和实验结果表明,基于PI控制器反馈回路的附加SVC在稳态运行中具有快速响应和高性能的实用性。
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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