Synchronization and Power Quality Improvement of 2SPV-BES Based Microgrid

S. Roy, Farheen Chishti, Bhim Singh, B. K. Panigrahi
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Abstract

This paper deals with the control and synchronization of double-stage solar photovoltaic (2SPV)-battery energy storage (BES) based three phase microgrid. The modified damped second order generalized integrator (MDSOGI) current control algorithm is used to feed power to the grid and at the same time it is used to provide phase angle and frequency estimation for the purpose of synchronization. MDSOGI is a modified version of the damped-SOGI structure, where frequency is estimated by integrating a frequency locked-loop (FLL) algorithm that utilizes the quadrature shifted components of the DSOGI structure. It has better power quality (PQ) performance, enhanced load balancing ability, effective harmonic mitigation property due to the band-pass-filter type phase response of the SOGI structure and is robust during frequency deviations. MDSOGI is used to extract the active and reactive fundamental weight components for generation of reference grid currents. Thus, the current control also meets the reactive power demand at common coupling point (CCP). In islanded mode of operation, voltage control mode is utilized and the MDSOGIFLL with the help of phase angle regulator is used to generate local frequency. This system is simulated in SIMULINK/Matlab R2020b and is subjected to various dynamic conditions for validating the satisfactory performance. Total harmonic distortion (THD) is found well within the IEEE-519 standard.
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基于2SPV-BES的微电网同步与电能质量改善
研究了基于双级太阳能光伏(2SPV)-电池储能(BES)三相微电网的控制与同步问题。采用改进的阻尼二阶广义积分器(MDSOGI)电流控制算法向电网供电,同时提供相角和频率估计以实现同步。MDSOGI是阻尼式sogi结构的改进版本,其中通过集成频率锁环(FLL)算法来估计频率,该算法利用DSOGI结构的正交位移分量。由于SOGI结构的带通滤波器型相位响应,它具有更好的电能质量(PQ)性能,增强的负载平衡能力,有效的谐波抑制性能,并且在频率偏差时具有鲁棒性。MDSOGI用于提取有功和无功基权分量,用于生成参考网格电流。因此,电流控制也能满足共联轴点(CCP)的无功需求。孤岛运行时,采用电压控制方式,利用MDSOGIFLL配合相角调节器产生局域频率。在SIMULINK/Matlab R2020b中对系统进行了仿真,并在各种动态条件下进行了仿真,验证了系统的良好性能。总谐波失真(THD)完全符合IEEE-519标准。
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