Implementation of distributed photovoltaic power supply systems

C. Hua, Chao-Ren Hsiao
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引用次数: 1

Abstract

Photovoltaic power systems are based on photovoltaic or solar modules which are very reliable and do not require any fuel or servicing. The object of this paper is to investigate power converter topologies and control techniques for a photovoltaic power supply system with parallel operation. All the modules have the same control configuration and each module includes inner current loop and outer voltage loop control in the proposed system. The system controller is based on a DSP and achieves the double loop control by using deadbeat control theory. Only two proportional controllers are required to implement the proposed control for the system with excellent output characteristics. The control is simple and effective with the easy program development. Instantaneous current sharing control is used to achieve the equal current distribution by a current sharing bus and ensure a fast dynamic response, equal load sharing capability and eliminates the circulation current. Simulation and experimental results verify the system performance.
实施分布式光伏供电系统
光伏发电系统基于光伏或太阳能模块,非常可靠,不需要任何燃料或维修。本文的目的是研究并联光伏供电系统的电源转换器拓扑结构和控制技术。所有模块具有相同的控制配置,每个模块都包括电流内环和电压外环控制。系统控制器基于DSP,采用无差拍控制原理实现双环控制。对于具有优异输出特性的系统,只需要两个比例控制器来实现所提出的控制。该控制简单有效,程序易于开发。瞬时共流控制是通过共流母线实现电流的均匀分布,保证动态响应快、负载均分担能力强、消除环流。仿真和实验结果验证了系统的性能。
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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