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Smart Grid: Overview, Issues and Opportunities. Advances and Challenges in Sensing, Modeling, Simulation, Optimization and Control

机译:智能电网:概述,问题和机遇。传感,建模,仿真,优化和控制方面的进步与挑战

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摘要

The genesis of early power systems and electric power grids during the past 130 years was enabled by automation and control of electromechanical machinery and power delivery networks. Today's end-to-end power and energy systems (from fuel source to end use) fundamentally depend on embedded and often an overlaid systems of sensors, computation, communication, control and optimization. There are even more opportunities and challenges in today's devices and systems, as well as in the emerging modern power systems — ranging from dollars, watts, emissions, standards, and more — at nearly every scale of sensing and control. Recent policies combined with potential for technological innovations and business opportunities, have attracted a high level of interest in smart grids. The potential for a highly distributed system with a high penetration of intermittent sources poses opportunities and challenges. Any complex dynamic infrastructure network typically has many layers, decision-making units and is vulnerable to various types of disturbances. Effective, intelligent, distributed control is required that would enable parts of the networks to remain operational and even automatically reconfigure in the event of local failures or threats of failure. This presentation provides an overview of smart grids and recent advances in distributed sensing, modeling, and control, particularly at both the high-voltage power grid and at consumer level. Such advances may contribute toward the development of an effective, intelligent, distributed control of power system networks with a focus on addressing distributed sensing, computation, estimation, controls and dynamical systems challenges and opportunities ahead.
机译:过去130年中,早期的电力系统和电网的产生是通过机电设备和输电网络的自动化和控制实现的。当今的端到端电力和能源系统(从燃料源到最终用途)从根本上依赖于嵌入式,常常是传感器,计算,通信,控制和优化的覆盖系统。在几乎所有规模的传感和控制领域,当今的设备和系统以及新兴的现代电源系统(包括美元,瓦特,排放,标准等)都面临着更多的机遇和挑战。最近的政策加上技术创新和商业机会的潜力,引起了对智能电网的高度关注。高度分散的系统和间歇性来源的高度渗透的潜力带来了机遇和挑战。任何复杂的动态基础架构网络通常都具有多层,决策单元,并且容易受到各种类型的干扰。需要有效,智能,分布式的控制,以使网络的某些部分保持运行状态,甚至在发生本地故障或故障威胁时甚至可以自动重新配置。本演讲概述了智能电网以及分布式感测,建模和控制方面的最新进展,尤其是在高压电网和用户层面。这些进步可能有助于开发电力系统网络的有效,智能,分布式控制,重点是解决分布式传感,计算,估计,控制和动态系统面临的挑战和机遇。

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