太阳能电池-热电转换器原型的设计

V. Boscaino, R. Miceli, V. Ferraro, A. Raciti, C. Cavallaro
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引用次数: 0

摘要

本文提出了一种适用于大电流应用的多源可再生能源系统。电源结构基于多输入电源转换器,包括控制子系统和重构子系统。与所连接的可再生能源类型无关,对输出直流电压母线进行适当的控制,并对每个可再生能源的工作点进行适当的控制,以实现最大功率的传输。设计了一种三输入48V热电-光伏-电池系统。实现了三个相互作用的反馈网络:控制输出电压的外环和连接可再生能源的尽可能多的内环,以实现每个可再生能源的最大功率传输。系统采用脉宽调制技术,设计合理,避免了系统的不稳定性。仿真结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a solar-battery-thermoelectric power converter prototype
In this paper a multisource renewable energy system for high-current applications is proposed. The power architecture is based on a multi-input power converter including control and reconfiguration subsystems. Independently of the type of connected renewable sources, a proper control of the output DC voltage bus is provided as well as a proper control on the operating point of each renewable source to achieve the maximum power transfer. A 48V thermoelectric-photovoltaic-battery system in a three input configuration is designed. Three interacting feedback networks are implemented: the outer loop which controls the output voltage and as many inner loops as connected renewable sources to achieve maximum power transfer from each renewable source. Pulse Width Modulation technique is applied and the system has been properly designed to avoid any system instability. Simulation results are shown to test the efficiency of the proposed solution.
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