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Modular Hybrid Energy Concept Employing a Novel Control Structure Based on a Simple Analog System

机译:采用基于简单模拟系统的新型控制结构的模块化混合能源概念

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摘要

This paper proposes a novel control topology which enables the setup of a low cost analog system leading to the implementation of a modular energy conversion system. The modular concept is based on hybrid renewable energy (solar and wind) and uses high voltage inverters already available on the market. An important feature of the proposed topology is a permanently active current loop, which assures short circuit protection and simplifies the control loops compensation. The innovative analogue solution of the control structure is based on a dedicated integrated circuit (IC) for power factor correction (PFC) circuits, used in a new configuration, to assure an efficient inverter start-up. The energy conversion system (control structure and maximum power point tracking algorithm) is simulated using a new macromodel-based concept, which reduces the usual computational burden of the simulator and achieves high processing speed. The proposed novel system is presented in this article from concept, through the design and implementation stages, is verified through simulation and is validated by experimental results.
机译:本文提出了一种新颖的控制拓扑结构,该拓扑结构可以建立低成本的模拟系统,从而实现模块化的能量转换系统。模块化概念基于混合可再生能源(太阳能和风能),并使用市场上已有的高压逆变器。提出的拓扑的一个重要特征是永久活动的电流环路,该环路可确保短路保护并简化控制环路补偿。控制结构的创新模拟解决方案基于用于功率因数校正(PFC)电路的专用集成电路(IC),该集成电路以新配置使用,以确保高效的逆变器启动。使用基于宏模型的新概念对能量转换系统(控制结构和最大功率点跟踪算法)进行了仿真,从而减轻了模拟器的常规计算负担并实现了很高的处理速度。本文从概念出发,通过设计和实施阶段提出了提出的新型系统,并通过仿真进行了验证,并通过实验结果进行了验证。

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