Power electronics for photovoltaic energy system of an Oceanographic buoy

Ehsan Behrouzian, A. Tabesh, Farzad Bahrainian, A. Zamani
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引用次数: 4

Abstract

This paper reports on design of power electronics for photovoltaic (PV) energy system of an offshore remote sensing apparatus. Challenges in design of a PV energy system for a marine application are investigated and the design limitations compared to inland PV system are discussed. The designed system includes PV cells as the main source of energy, electric storage (battery), maximum power point tracking (MPPT) and protection circuitries. An MPPT algorithm based on measuring the slope of the PV power-voltage curves is presented which can be implemented with simple analog electronic circuits. The MPPT circuit uses Sepic converter as a core and it also includes a protection unit for maintaining the battery voltage in a safe range. The performance of the proposed MPPT algorithm in presence of measurement noises is verified using a circuit simulation software tool (PSCAD). Simulation results verify that the algorithm appropriately regulates the voltage of PV cells at MPP and it is robust against measurement noises for a signal-to-noise ratio above -2db.
海洋浮标光伏能源系统的电力电子器件
本文报道了一种海上遥感装置光伏能源系统的电力电子系统设计。研究了船舶光伏能源系统设计中的挑战,并讨论了与内陆光伏系统相比的设计局限性。所设计的系统包括以光伏电池为主要能源,蓄电(电池),最大功率点跟踪(MPPT)和保护电路。提出了一种基于测量光伏电源电压曲线斜率的最大功率跟踪算法,该算法可以用简单的模拟电路实现。MPPT电路使用Sepic转换器作为核心,它还包括一个保护单元,用于将电池电压保持在安全范围内。利用电路仿真软件工具(PSCAD)验证了MPPT算法在测量噪声存在下的性能。仿真结果表明,该算法能较好地调节MPP下光伏电池的电压,并且在信噪比大于-2db的情况下,对测量噪声具有较强的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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