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Modeling and Control of Stand-alone PV System Based on Fractional-Order PID Controller

机译:基于分数级PID控制器的独立PV系统建模与控制

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In this paper, an efficient energy management scheme for stand-alone photovoltaic microgrid system (SAPVMS) is elaborated. The proposed fractional order (FO) PID and PI based energy management scheme comprises of two control loops namely inner and outer loops to outperform a standalone PV system with satisfactory response. The main task of the inner control loop is to extract and track maximum power from SAPVMS with sufficient tracking behavior. Moreover, the outer control loop is equipped with the battery for controlling the power between the source and the load smoothly. Particle swarm optimization (PSO) is working to fine tune the proposed control loops by generating their optimal settings. The integral of the absolute error multiplied by time is utilized to define the proposed system objective function. Various scenarios include sun irradiance variations and load fluctuations are presented to demonstrate the theoretical analysis, effectiveness of the offered energy management strategy. Further validations for numerical results attained by PSO are made compared with classical controllers such as PI and PID which signify the tuned FOPID and FOPI gains. The model results of the entire SAPVMS are described given along with comprehensive simulation results that discover the feasibility of the system.
机译:本文阐述了独立光伏微电网(SAPVMS)的有效能量管理方案。所提出的分数阶(FO)PID和PI基于PI的能量管理方案包括两个控制循环,即内部和外部环路以满意的响应令人满意的独立式PV系统。内部控制回路的主要任务是以足够的跟踪行为从SAPVMS中提取和跟踪最大功率。此外,外控制回路配有电池,用于平滑地控制源和负载之间的电力。粒子群优化(PSO)正常通过产生最佳设置来微调所提出的控制回路。使用绝对误差乘以时间的积分来定义所提出的系统目标函数。各种场景包括太阳辐照度变化和负载波动,以证明提供的能源管理策略的理论分析,有效性。与PI和PID等经典控制器(如PI和PID)相比,对PSO获得的数值验证进行了进一步的验证,它表示调谐的FoPID和FoPI增益。整个SAPVM的模型结果与发现系统可行性的综合模拟结果进行了描述。

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