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A review of power electronics interfaces for distributed energy systems towards achieving low-cost modular design

机译:旨在实现低成本模块化设计的分布式能源系统的电力电子接口综述

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Due to increased attention towards clean and sustainable energy, distributed energy (DE) systems are gaining popularity all over the world. Power electronics are an integral part of these energy systems being able to convert generated electricity into consumer usable and utility compatible forms. But the addition of power electronics adds costs to the DE capital investments along with some reliability issues. Therefore, widespread use of distributed energy requires power electronics topologies that are less expensive and more dependable. Use of modular power electronics is a way to address these issues. Adoption of functional building blocks that can be used for multiple applications results in high volume production and reduced engineering effort, design testing, onsite installation and maintenance work for specific customer applications. In this paper, different power electronics topologies are reviewed that are typically used with distributed energy systems. The integrated power electronics module (IPEM) based back-to-back converter topologies are found to be most suitable interface that can operate with different DE systems with small or no modifications. Also the requirements for a hierarchical control structure with standardized power and communication interfaces are addressed in the paper along with some discussion on future design possibilities for the IPEM-based power electronics topologies. It is expected that modular and flexible power electronics and standardized controls and interfaces, will provide commonality in hardware and software for the power electronics interfaces, thus will enable their volume production and decrease their cost share in distributed energy applications.
机译:由于人们越来越关注清洁和可持续能源,因此分布式能源(DE)系统在世界范围内越来越受欢迎。电力电子是这些能源系统不可或缺的一部分,能够将产生的电能转换成消费者可用的和公用事业兼容的形式。但是,增加功率电子器件会增加DE资本投资的成本以及一些可靠性问题。因此,分布式能量的广泛使用要求电力电子拓扑结构更便宜且更可靠。使用模块化电力电子设备是解决这些问题的一种方法。采用可用于多种应用的功能性构建块可实现大量生产,并减少工程量,设计测试,针对特定客户应用的现场安装和维护工作。在本文中,回顾了通常用于分布式能源系统的不同电力电子拓扑。发现基于集成电力电子模块(IPEM)的背对背转换器拓扑是最合适的接口,该接口可以与不同的DE系统一起运行,而无需进行很小的改动或进行任何改动。本文还讨论了对具有标准化电源和通信接口的分层控制结构的要求,以及有关基于IPEM的电力电子拓扑的未来设计可能性的一些讨论。预计模块化和灵活的电力电子设备以及标准化的控件和接口将为电力电子设备接口提供硬件和软件的通用性,从而使它们能够批量生产并降低其在分布式能源应用中的成本份额。

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