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Performance analysis of centralized, distributed and hybrid Demand Load control architecture for smart power grid

机译:智能电网集中,分布式和混合需求负荷控制架构的性能分析

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Demand Response (DR) technology makes it possible to have two-way communication between service providers and home appliances inside the customer premise. This state-of-art technology is equipped with smart meters, load control devices (smart devices), smart thermostats, smart switches and home energy consoles. Furthermore, DR technology can help us to modernize our electricity system and provide customers with new information and options to manage their electricity use. Customers can reduce or shift their power usage during peak demand periods in response to time-based rates or other forms of financial incentives. Demand response solutions play a key role in several areas: pricing, emergency response, grid reliability, infrastructure planning and design, operations, and deferral. In previous studies Demand Load for smart power grid is a mostly centralized approach. The value of this study is to propose DR as a fully distributed and hybrid approach. Thus, the study will investigate performance of DR in the context of fully centralize, fully Distributed and Hybrid fashion.
机译:需求响应(DR)技术使得在客户前提下的服务提供商和家电之间有双向通信。这种最先进的技术配备了智能电表,负载控制设备(智能设备),智能恒温器,智能开关和家用能源控制台。此外,DR技术可以帮助我们通过现代化的电力系统,并为客户提供新的信息和选项来管理他们的电力使用。响应基于时间的税率或其他形式的金融激励措施,客户可以在高峰需求期间减少或转移他们的电力使用情况。需求响应解决方案在若干领域发挥关键作用:定价,应急响应,电网可靠性,基础设施规划和设计,运营和延期。在以前的研究中,智能电网的需求负载是一种主要的集中方法。本研究的价值是提出博士作为一种完全分布和混合方法。因此,该研究将研究博士在完全集中,完全分布式和混合方式的情况下的性能。

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