物业微电网发展

Xiongwei Liu, I. Chilvers, M. Mokhtar, A. Bedford, Keir Stitt, J. Yazdani
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引用次数: 8

摘要

可再生能源的微发电和/或现场发电通常是间歇性的,推动了楼宇管理系统(BMS)的智能化,将本地能源生产和储存与公共电网相结合,形成智能微电网。本文旨在为位于英国西坎布里亚郡韦斯特湖区的中央兰开夏大学塞缪尔·林道大楼开发一个物业微电网。该系统涵盖了现场可再生能源和天然气产生的能源(包括电力和热能)、能源储存和能源需求管理。通过对微电网的最佳运行控制,同时最大限度地减少主电网的电力传输,该系统将使该物业能够最大限度地利用可再生能源,提高能源效率,减少能源账单,最大限度地减少可再生能源发电对主电网的影响,并减少温室气体排放。
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Microgrid development for properties
Microgeneration and/or on-site generation from renewable sources, which are generally intermittent, have been pushing the way forward to introduce intelligence to Building Management System (BMS), so as to integrate local energy generation and storage with the public grid and form an intelligent microgrid. This paper aims to develop a property microgrid for the Samuel Lindow Building of the University of Central Lancashire at its Westlakes Campus, West Cumbria, UK. This system covers energy (both electricity and heat) generation from on-site renewable sources and gas, energy storage and energy demand management. Through optimum operation control of the microgrid whilst minimising electrical power transfer from the main grid, this system will enable the property to maximise the benefit of the renewable sources, to improve energy efficiency, to reduce the energy bill, to minimise the impact of the renewable generation on the main grid, and to reduce greenhouse gas emission.
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