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The Smart Grid-State-of-the-art and Future Trends

机译:智能电网的最新发展和未来趋势

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摘要

This paper introduces Smart Grid and associated technical, environmental and socio-economic, and other non-tangible benefits to society, and articulates the need for the concept and the fact that it is a dynamic interactive, real-time infrastructure that responds to the challenges of designing and building the power system of the future, rather than being simply a marketing term. To illustrate the diversity of terminology, the paper compares an Electric Power Research Institute (EPRI) definition with that suggested by a study group of the International Electrotechnical Commission (IEC). Next, a paper sponsored by the Canadian Electricity Association (CEA) that cites three example definitions to highlight the diversity of views of Smart Grid is briefly reviewed. Early misconceptions and characterizations of Smart Grid are discussed as a prelude to addressing challenging issues that motivate developing and implementing related innovative technologies, products and services. The paper then discusses the potential promise of the Smart Grid, which is embedded in its often-cited attributes of efficiency, accommodating, quality focus, enabling and self-healing to name some. The paper then addresses some of the often-cited impediments to accepting Smart Grid which are based on concerns and issues confronting its forward progress, adoption and acceptance. Distribution Automation (DA) and embedded intelligence are discussed emphasising self-healing, optimizing operation and facilitating recreation and recovery from abnormal events. Functional and integration requirements of Distributed Energy Resources (DER,) are detailed. Smart Consumption Infrastructure elements of Distribution Management Systems (DMS,) Automated Metering Infrastructure (AMI,) Smart Homes (SH), and Smart Appliances (SA,) are discussed. Following the introductory section, this paper summarizes contributions included in the double issue 42(3—4) of the Electric Power Components and Systems Journal. To begin, papers are offered discussing smart grid activities in China, India, and the development of a Smart Grid roadmap for the US State of Kentucky. The approaches of each of these cases reflect the diversity of policy initiatives in these jurisdictions. Two state of the art reviews are given next. The first considers distribution network active management and future development trends in technologies and methods, where centralized and decentralized management frameworks and applying agent-based coordination are discussed. The second offers a review of smart home technologies and the goals of an energy management system (SHEMS). This section is concluded by a letter providing an overview of recent and expected advances nanotechnol-ogy applications in Smart Grid. Following the state of the art review section, ten papers offering new and innovative research approaches and results are included. These papers cover Smart Grid topics such as real-time energy control approach for smart home energy management systems, optimal operation of energy- efficient buildings with Combined Heat and Power (CHP) systems, energy management and control of Electric Vehicle (EV) charging stations, voltage-frequency control of a voltage source inverter (VSI) in a smart islanded micro-grid, smart generation scheduling for wind-thermal-pumped storage systems, optimized power system restoration, robust data transmission upon compressive sensing, data fusion for wide-area oscillation monitoring, satellite based GPS synchronized monitoring systems, stability in Smart Grid with emerging renewable energy technologies.
机译:本文介绍了智能电网以及相关的技术,环境和社会经济及其他对社会的无形收益,并阐明了对这一概念的需求以及这一事实,即它是一种动态,交互式,实时的基础架构,可以应对挑战设计和构建未来的电源系统,而不仅仅是一个营销术语。为了说明术语的多样性,本文将电力研究所(EPRI)的定义与国际电工委员会(IEC)的研究组提出的定义进行了比较。接下来,简要回顾由加拿大电力协会(CEA)赞助的一篇论文,该论文列举了三个示例定义以突出显示智能电网的观点多样性。讨论了智能电网的早期误解和特征,以此作为解决挑战性问题的序幕,这些挑战性问题激励着开发和实施相关创新技术,产品和服务。然后,本文讨论了智能电网的潜在前景,它嵌入了其经常被提及的效率,适应性,质量关注,使能和自我修复等属性。然后,本文针对智能电网的一些经常被提及的障碍,这些障碍基于其向前发展,采用和接受所面临的关注和问题。讨论了配电自动化(DA)和嵌入式智能,强调了自我修复,优化操作并促进了异常事件的恢复和恢复。详细介绍了分布式能源(DER)的功能和集成要求。讨论了配电管理系统(DMS),自动计量基础架构(AMI),智能家居(SH)和智能设备(SA)的智能消费基础架构元素。在引言部分之后,本文总结了《电力组件和系统杂志》第42(3-4)期双期中所包含的内容。首先,提供的文章讨论了在中国,印度的智能电网活动以及为美国肯塔基州开发的智能电网路线图。这些案件中每种案件的处理方式都反映了这些辖区中政策举措的多样性。接下来给出两个最新的评论。第一部分考虑了配电网络的主动管理以及技术和方法的未来发展趋势,在其中讨论了集中式和分散式管理框架以及基于代理的协调的应用。第二部分介绍了智能家居技术和能源管理系统(SHEMS)的目标。本节以一封信结尾,概述了智能电网中纳米技术的最新应用和预期进展。在最新的技术评论部分之后,包括了十篇提供新的和创新的研究方法和结果的论文。这些论文涵盖了智能电网主题,例如用于智能家居能源管理系统的实时能源控制方法,具有热电联产(CHP)系统的节能建筑的最佳运行,电动汽车(EV)充电站的能源管理和控制,智能岛状微电网中的电压源逆变器(VSI)的电压频率控制,风热泵存储系统的智能发电调度,优化的电力系统恢复,基于压缩感测的可靠数据传输,广泛的数据融合区域振荡监测,基于卫星的GPS同步监测系统,具有新兴可再生能源技术的智能电网的稳定性。

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