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首页> 外文期刊>Recent advances in electrical & electronic engineering >Constant Power Control Strategy for Photovoltaic Generation in DC Micro-Grid
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Constant Power Control Strategy for Photovoltaic Generation in DC Micro-Grid

机译:直流微电网光伏发电恒定功率控制策略

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摘要

Background: Currently, power control of PV generation focuses on the Maximum Power Point Tracking (MPPT) strategy, with which PV systems is sensitive to the light, temperature, and micro-grid state, and introduces power fluctuation to the micro-grid. Methods: With the schedulable requirements of Photovoltaic (PV) systems in the grid-tied mode, PV generation systems should possess constant power output capability. This paper proposes an approach for constant power control of PV systems in DC micro-grid. By analyzing the output characteristic between active power and voltage of PV systems, and acquisition of PV output current and the capacitor voltage, voltage control reference in the PV power-voltage curve is obtained by Lagrange interpolation fitting. Result: With the implementation of closed-loop control of photovoltaic boost voltage, constant power output control of PV generation systems can be achieved. Further, this method is able to cope with the change of light and temperature and micro-grid bus voltage. This method is simple and has good environmental adaptability and fast-tracking speed. Conclusion: Simulation results verify the effectiveness of the proposed control strategy compared with a perturb and observe method which can attain the same function.
机译:背景:目前,光伏生的功率控制着眼于最大功率点跟踪(MPPT)策略,其中PV系统对光,温度和微电网状态敏感,并向微电网引入功率波动。方法:采用电流栓模式中光伏(PV)系统的可调度要求,PV生成系统应具有恒定功率输出能力。本文提出了一种DC微电网PV系统恒功率控制的方法。通过分析PV系统的电源和电压之间的输出特性,并采集PV输出电流和电容电压,通过拉格朗日插值拟合获得PV电压曲线中的电压控制参考。结果:随着光伏升压电压的闭环控制,可以实现光伏生成系统的恒力输出控制。此外,该方法能够应对光和温度和微网母线电压的变化。这种方法简单,具有良好的环境适应性和快速跟踪速度。结论:仿真结果验证了所提出的控制策略的有效性与可以获得相同功能的扰动和观察方法。

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