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Storage-based smart grid communication framework

机译:基于存储的智能电网通信框架

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In this paper we theoretically investigate the optimization problem of leveling load fluctuations on the electrical grid by means of widely distributed energy storage, and pervasive communication between grid and consumers. Allowing real-time exchange of load and generation forecasts along with storage capacity, the optimization simultaneously minimizes electrical fluctuations on the grid as well as energy costs. The optimization problem lies within the constraints of minimum, forecasted, and learned energy requirements for consumers, thermal and renewable generation capacity, weather forecasts, and storage levels, as well as within physical and stochastic models to provide accurate forecasting of energy demand on the grid. Distinct hierarchical structures of these constrains based on increased penetration of renewable generation are necessarily considered. The optimization problem, and its solutions, become the basis for a pervasive communication framework that lead to a “just-in-time” model of energy distribution, while utilizing energy generators at their maximum efficiency. This paper shows that such a conceptual framework leads to a truly “smart” grid, and is relatively generic and easy to adapt to distinct grid structures and generation sources.
机译:本文理论上,通过广泛分布的能量存储,从理论上研究了电网上的载荷波动的优化问题,以及网格和消费者之间的普遍沟通。允许实时汇兑负载和发电预测以及存储容量,优化同时最大限度地减少电网上的电波动以及能量成本。优化问题在于消费者,热和可再生发电能力,天气预报和存储水平的最低限度,预测和学习的能源要求,以及物理和随机模型,以便在网格上提供准确的能量需求预测。必须考虑基于可再生生成的增加的渗透性的这些约束的不同分层结构。优化问题及其解决方案成为普遍的通信框架的基础,导致A“即时”能量分配模型,同时利用能源发生器以最大效率。本文表明,这样的概念框架导致了真正的“ smart”网格,并且相对通用,易于适应不同的网格结构和生成源。

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