需求驱动的智能电网应用和技术的实现

M. Numan, Z. Ming, J. B. Brima, Ibrahim J. Sowe, M. K. Bodla
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引用次数: 3

摘要

能源效率和电力危机是当今全球面临的关键问题。发电多样化、需求响应、可再生能源调节和减少二氧化碳排放是目前电网系统限制无法涵盖的一些问题。智能电网通过在电网的日常运行中集成智能控制、传感和通信,彻底改变了电力的产生、分配和消费。智能电网的目标是在环境上可持续发展,因为这种趋势技术的部署是必须的。本文阐述了智能电网技术实施过程中可能面临的问题,以及实现智能电网效益最大化、提高成本效益比的政策考虑。它解释了智能电网应用在自下而上设计中面临挑战的三个领域,并概述了公用事业智能电网的概况。提出了一种自顶向下的方案,有助于消除智能电网实施中的挑战和障碍。最后进行了成本效益分析,以证明这一趋势技术在电力部门的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Requirements driven implementation of smart grid applications and technology
Energy efficiency and power crises are the critical issues that the globe is facing nowadays. Generation diversification, Demand Response, renewable energy accommodation, and reduction of Carbon dioxide emission are some of the issues that cannot be covered within the limitation of the current grid system. Smart Grid has revolutionized the generation, Distribution, and Consumption of electricity by integrating intelligent control, sensing and communication in daily operation of the electric grid. The goal of the Smart Grid is to be environmentally sustainable, for the deployment of this trending technology is a must. This paper addresses the issues that would be faced in the implementation of the smart Grid technology, policy consideration to maximize the benefit of smart grid and enhance the benefit over cost ratio. It explains the three sectors where the smart grid applications can be seen with challenges in bottom-up design, and overview of Smart grid for utilities. A top-down scheme is presented which can help in eliminating the challenges and barriers in the smart grid implementation. Finally cost vs. benefit analysis is made to prove the effectiveness of this trending technology in the power sector.
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