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首页> 外文期刊>Renewable energy focus >Stability assessment and optimal state-feedback system design for PQ-Vf coordination in a PV/DFIG/DSG based microgrid
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Stability assessment and optimal state-feedback system design for PQ-Vf coordination in a PV/DFIG/DSG based microgrid

机译:基于PV / DFIG / DSG的微电网中PQ-Vf协调的稳定性评估和最佳状态反馈系统设计

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In this paper an improved comprehensive stability region is presented towards optimal feedback solution for multiple distributed generators (DGs) based microgrid. Overall optimal control design challenges for DGs undergoing grid integrated/islanded operation (i.e. variable stability regions) are addressed for photovoltaic (PV), wind generation system (WGS) as these are considered for multi-DGs dynamics in the present microgrid. Second order phase locked loop (PLL) based PV side voltage source converter (VSC) control, and doubly fed induction generator's (DFIG's), grid side converter (GSC) control are considered for proposed overall gain optimization. To enhance the stability margin global/overall optimal feedback path is targeted here instead of local optimal solutions (individual DG consideration). To achieve optimal stability margin out of multiple individual optimality an Improved Firefly Algorithm IFA) with increased diversity of population and enhanced population density (by harmony search algorithm) is proposed in this paper. The efficacy for global solution is achieved with incorporation of linear incremental pitch adjustment rate (PAR) and exponential decaying bandwidth to obtain fast convergence and to incorporate less randomization for proposed IFA. The overall DG optimization enhances the dynamic stability limits of respective controllers by minimizing low frequency network behavior. The efficacy of proposed stability assessment in terms of power oscillation damping and improved stability limits are verified in MATLABscript, Simulink platforms and validated in TMS320 C6713 DSP test-bench simulation.
机译:在本文中,提出了一种改进的综合稳定性区域,用于基于多个分布式发电机(DG)的微电网的最优反馈解决方案。对于光伏(PV),风力发电系统(WGS),解决了正在进行电网集成/孤岛运行(即可变稳定性区域)的DG的总体最优控制设计挑战,因为在当前的微电网中考虑将这些用于多DG的动力学。考虑了基于二阶锁相环(PLL)的PV侧电压源转换器(VSC)控制以及双馈感应发电机(DFIG),电网侧转换器(GSC)控制,以实现建议的总体增益优化。为了提高稳定性裕度,此处以全局/总体最佳反馈路径为目标,而不是局部最佳解决方案(考虑单个DG)。为了从多个个体最优性中获得最优的稳定裕度,提出了一种改进的萤火虫算法IFA,该算法具有更大的种群多样性和更高的种群密度(通过和声搜索算法)。通过结合线性增量音高调整率(PAR)和指数衰减带宽来获得快速收敛并为提议的IFA引入较少的随机性,可以实现整体解决方案的功效。总体DG优化通过最小化低频网络行为来增强各个控制器的动态稳定性极限。在MATLABscript,Simulink平台上验证了建议的稳定性评估在功率振荡阻尼和改进的稳定性极限方面的功效,并在TMS320 C6713 DSP测试平台仿真中进行了验证。

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