Electronic controlled device for the analysis and design of photovoltaic systems

P. Sanchis;J. Lopez;A. Ursua;L. Marroyo
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引用次数: 43

Abstract

The characterization and design of photovoltaic systems is a difficult issue due to the variable operation atmospheric conditions. With this aim, simulators and measurement equipments have been proposed. However, most of them do not deal with real atmospheric conditions. This letter proposes an electronic device that first measures the real evolution of the I-V characteristic curves of photovoltaic modules and generators, and then physically emulates in real time these curves to test photovoltaic inverters. The device consists of a dc-dc converter, a microcontroller and a data storage unit. The two operation modes (emulation and measurement) are digitally driven by the microcontroller. The converter current is controlled by means of a variable-hysteresis control loop, whose reference is provided by the microcontroller. In addition, a digital voltage control loop is designed to find out the complete characteristic curves of the photovoltaic generators. A 15-kW prototype is designed and built that can measure three times per second the characteristic curves of up to seven generators and then emulate their electrical behavior to test photovoltaic inverters. With the proposed device, the optimal configuration and performance of photovoltaic modules and generators, as well as the operation of photovoltaic inverters can be thoroughly analyzed under real atmospheric conditions.
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用于光伏系统分析和设计的电子控制装置
由于操作大气条件的变化,光伏系统的表征和设计是一个难题。为此,提出了模拟器和测量设备。然而,它们中的大多数并不涉及真实的大气条件。这封信提出了一种电子设备,该设备首先测量光伏模块和发电机的I-V特性曲线的真实演变,然后实时物理模拟这些曲线,以测试光伏逆变器。该装置由直流-直流转换器、微控制器和数据存储单元组成。两种操作模式(模拟和测量)由微控制器数字驱动。转换器电流通过可变磁滞控制回路来控制,其参考由微控制器提供。此外,还设计了一个数字电压控制回路,以找出光伏发电机的完整特性曲线。设计并建造了一个15千瓦的原型,可以每秒测量三次多达七台发电机的特性曲线,然后模拟它们的电气行为来测试光伏逆变器。利用所提出的装置,可以在真实的大气条件下全面分析光伏组件和发电机的最佳配置和性能,以及光伏逆变器的运行情况。
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Table of contents IEEE Power Electronics Letters blank page IEEE Power Electronics Society Information Order form for reprints 2005 Index
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