Design and Implementation of stand-alone smart grid employing renewable energy resources on Pulau Ubin Island of Singapore

Yang Fan, V. Rimali, M. Tang, C. Nayar
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引用次数: 31

Abstract

This paper presents the design and implementation of an intelligent micro-grid with high percentage of clean and renewable energy resources on Pulau Ubin Island to meet existing and future electricity demand. Pulau Ubin is one of the rare enclaves in highly urbanized Singapore to maintain its rustic charm of “village” life, which is representative of Singapore in her early days of development. The system design has considered all possible energy sources, energy conversion efficiency, power demand, as well as environmental and economic concerns. Photovoltaic (PV), bio-diesel powered doubly fed induction generators are utilized to generate electricity. Energy storage system has been properly sized to maximize the use of renewable energy and to prolong the battery life. Smart-grid technologies, including smart meters, micro grid controller, and remote monitoring system with SCADA functions have been employed to optimize the energy generation, monitor energy consumption, manage instantaneous power flow, maintain electricity quality, and generate fault alerts. This project also serves as a platform for the test-bedding of clean and renewable energy generation and storage as well as advanced grid control technologies under an intelligent Micro-grid infrastructure. These smart grid features have the great potential to be applied to grid connected micro grids. Upon the successful implementation of this system, it can serve as a model of sustainable development for many areas in Asia, of which roughly 40% of its population have little or no access to electricity.
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新加坡乌敏岛采用可再生能源的独立智能电网的设计与实施
本文介绍了在乌敏岛设计和实施一个具有高比例清洁和可再生能源的智能微电网,以满足现有和未来的电力需求。乌敏岛是高度城市化的新加坡少有的保持着“乡村”生活魅力的飞地之一,是新加坡发展初期的代表。系统设计考虑了所有可能的能源来源、能源转换效率、电力需求以及环境和经济问题。利用光伏(PV)、生物柴油驱动的双馈感应发电机发电。储能系统的尺寸合理,最大限度地利用可再生能源,延长电池寿命。采用智能电表、微网控制器、具有SCADA功能的远程监控系统等智能电网技术,实现发电优化、能耗监测、瞬时潮流管理、电能质量维护、故障预警等功能。该项目还将作为智能微电网基础设施下清洁和可再生能源发电和存储以及先进电网控制技术的试验平台。这些智能电网的特点在并网微电网中有着巨大的应用潜力。一旦该系统成功实施,它可以作为亚洲许多地区可持续发展的典范,其中大约40%的人口很少或根本无法获得电力。
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