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Active Load Simulation Study of Solar and Wind Hybrid Energy System in Stand-Alone Mode of Operation

机译:独立运行模式中太阳能混合能源系统的主动负荷仿真研究

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Background: This work presents results based on realistic data as inputs obtained from the NASA surface metrology consisting a PV-Wind hybrid system. Methods: This system includes PV and wind subsystems, load and a hybrid system. The system included a 3.6kW PV array and a 3.2kW wind turbine and collected realistic data from January to December 2015 from the NASA website at Manipal location (INDIA) to calculate the solar and wind power. The study simulated daily and monthly data, and validated the simulation results for the physical system. Two Boost converters transfer a maximum power of Wind Energy Conversion System (WECS) and Photo Voltaic (PV) system to DC link. These converters are operated based on Perturb and Observed (P & O) MPPT algorithm and with a change in duty cycle. Based on PQ control strategy, the single-phase voltage source inverter supplies power to the grid and maintains the DC link voltage 400V. Results: With LCL filter, the Total Harmonic Distortion (THD) of the load current was observed to be 1.66% and without filter, the THD of the load current was 25.66%. Conclusion: Total Harmonic Distortion (THD) of load voltage was 0.1 % with LCL filter and without filter, the load voltage THD was 60.76%.
机译:背景:本工作基于现实数据提出了作为从NASA表面计量获得的输入,包括PV-风混合系统的输入。方法:该系统包括光伏和风力子系统,负载和混合系统。该系统包括3.6kW的PV阵列和3.2kW的风力涡轮机和2015年1月到2015年12月的现实数据,从美国宇航局网站(印度),以计算太阳能和风力。该研究模拟每日和每月数据,并验证了物理系统的仿真结果。两个升压转换器将风能转换系统(WECS)和光伏(PV)系统的最大功率转移到DC Link。这些转换器基于扰动和观察(P&O)MPPT算法和占空比的变化操作。基于PQ控制策略,单相电压源逆变器为网格提供电源,并保持直流链路电压400V。结果:随着LCL滤波器,载荷电流的总谐波失真(THD)为1.66%,无过滤器,负载电流的THD为25.66%。结论:LCL过滤器的负载电压的总谐波变形(THD)为0.1%,没有过滤器,负载电压THD为60.76%。

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