Development of an FPGA-based System for Real-Time Simulation of

E. Koutroulis, K. Kalaitzakis, Vasileios Tzitzilonis
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引用次数: 26

Abstract

Photovoltaic (PV) simulators are indispensable for the laboratory operational evaluation of PV energy production system components (e.g. battery chargers, DC/AC inverters etc.), in order to avoid the time-consuming and expensive field-testing process. In this paper, the development of a novel real-time PV simulator based on Field Programmable Gate Arrays (FPGAs), is presented. The proposed system consists of a Buck-type DC/DC power converter, which is controlled by an FPGA-based unit using the Pulse Width Modulation (PWM) principle. The system operator is able to define both the PV module type to be simulated and the environmental conditions under which the selected PV module operates. The proposed design method enhances the rapid system prototyping capability and enables the reduction of the power converter size and cost due to the high clock speed feature of the FPGA-based control unit. The experimental results indicate that using the proposed method the PV module current-voltage characteristics are simulated with an average accuracy of 1.03%.
基于fpga的实时仿真系统的开发
光伏(PV)模拟器对于光伏发电系统组件(如电池充电器、DC/AC逆变器等)的实验室运行评估是必不可少的,以避免耗时和昂贵的现场测试过程。本文介绍了一种基于现场可编程门阵列(fpga)的新型实时光伏模拟器的开发。该系统由buck型DC/DC功率转换器组成,由基于fpga的脉冲宽度调制(PWM)原理控制。系统操作员能够定义要模拟的光伏组件类型和所选光伏组件运行的环境条件。该设计方法提高了系统快速原型设计能力,并且由于基于fpga的控制单元的高时钟速度特性,可以减小功率转换器的尺寸和成本。实验结果表明,采用该方法对光伏组件的电流电压特性进行仿真,平均精度为1.03%。
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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