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A comprehensive review of cogeneration system in a microgrid: A perspective from architecture and operating system

机译:微电网热电联产系统的全面综述:从架构和操作系统的角度

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Several factors such as climate change, increment in fuel cost and digital technology era have lead to transformation of conventional grid into smart grid. Existing microgrid can be integrated with smart grid characteristics by various topologies, including cogeneration system where both electricity and thermal energy from single source of fuel can be produced. Cogeneration system has better efficiency, lower costs and able to reduce greenhouse gas emissions compared to singular conventional methods. This paper presents a comprehensive review of cogeneration system, covering the principle operation and types of prime movers available for use in power plant, building and industrial plant. Prime movers such as gas turbine, steam turbine, micro turbine, reciprocate engine and fuel cell are compared in terms of size (kW), efficiency and principal operation. This review also describes the hierarchical control system for cogeneration system; classified into three types, which are local, centralized and decentralized. This study tries to find the most suitable control strategy for certain cogeneration system by referring to the related standards available. A number of cogeneration applications in commercial buildings, including hospital, airport, shopping complex and hotel, are presented to show the effectiveness of the cogeneration system. Overall, this paper presents comparison between each prime mover technology, factors that influence the selection of prime movers, challenges and prospects of cogeneration system.
机译:气候变化,燃料成本增加和数字技术时代等多种因素导致了传统电网向智能电网的转变。现有的微电网可以通过各种拓扑与智能电网特性集成在一起,包括热电联产系统,在该系统中,可以从单一燃料来源生产电能和热能。与传统的常规方法相比,热电联产系统具有更高的效率,更低的成本并能够减少温室气体排放。本文对热电联产系统进行了全面的回顾,涵盖了可用于发电厂,建筑和工业工厂的原动机的基本操作和类型。对原动机(例如燃气轮机,蒸汽轮机,微型涡轮机,往复式发动机和燃料电池)进行了尺寸(kW),效率和主要运行方面的比较。本文还描述了热电联产系统的分级控制系统。分为三种类型,分别是本地,集中式和分散式。本研究试图通过参考可用的相关标准,为某些热电联产系统找到最合适的控制策略。介绍了许多商业建筑中的热电联产应用,包括医院,机场,购物中心和酒店,以显示热电联产系统的有效性。总体而言,本文介绍了每种原动机技术之间的比较,影响原动机选择的因素,热电联产系统的挑战和前景。

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