小型风能和太阳能混合独立发电系统的实现与控制

M. Rezkallah, S. Sharma, A. Chandra, Bhim Singh
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引用次数: 21

摘要

提出了一种基于风力发电机组和太阳能光伏发电阵列的混合独立发电系统的实现和控制方法。鼠笼式感应发电机(SCIG)与小波变换相结合,用于机电能量转换。采用解耦非线性控制算法控制三支路电压源变换器(VSC),实现了交流母线电压的频率和幅值,改善了共耦合点(PCC)处的电能质量。在混合系统中加强了电池储能系统(BESS),以确保在风能、太阳能和负荷波动下的功率均衡。为了从太阳能光伏阵列获得最大功率并调节输出直流电压,采用摄动和观测技术对DC-DC升压变换器进行了控制。此外,在直流母线处捆绑了一个转储负载,以确保控制的稳定性,并保护BESS和固态开关在电池充满期间免受直流母线过电压的影响。在MATLAB/Simulink中对HSPGS及其控制算法进行了建模,并对其在平衡/不平衡、线性/非线性负载和气候条件变化下的性能进行了实时测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation and control of small-scale hybrid standalone power generation system employing wind and solar energy
This paper presents an implementation and control of a hybrid standalone power generating system (HSPGS) based on a wind turbine (WT) and a solar-photovoltaic (PV) array. A squirrel cage induction generator (SCIG) is coupled with a WT for electromechanical energy conversion. The frequency and amplitude of voltage at AC bus, as well as, power quality improvement at the point common coupling (PCC) are achieved by controlling the three-leg voltage source converter (VSC) using decoupled nonlinear control algorithm. A battery energy storage system (BESS) is reinforced in the hybrid system to ensure power leveling under wind, solar and load fluctuations. For obtaining the maximum power from a solar PV array and to regulate the output DC voltage, a DC-DC boost converter is controlled using perturbation and observation technique. Moreover, a dump load is tied at DC bus to ensure stability of control and to protect the BESS and solid state switches from overvoltage at DC bus during the period of fully charged battery. The proposed HSPGS and its control algorithms are modeled in MATLAB/Simulink and its performance is tested in real time under presence of balanced/unbalanced, linear/nonlinear loads and change in climate conditions.
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