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Energy Management in Smart Grids with Electric Vehicles based on Pricing

机译:基于定价的电动汽车智能电网的能源管理

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This paper presents an energy management system for smart grids with electric vehicles based on pricing. Units are modeled as price-elastic units, price-inelastic units and electric vehicles. Prices are negotiated by the price-elastic units and the electric vehicles such that the total cost of all units is minimized while meeting power, energy and mobility constraints. The negotiation is coordinated by a price coordinator which ensures power balance while regarding predictions for the price-inelastic units. Cornerstone of the method is a dual decomposition using the fast gradient method. The method uses distributed computation, ensures privacy of the units and is plug and play capable with respect to the units. Communication and computation can be reduced by constructing a primal feasible suboptimal solution. Simulations for a smart grid of a company with a conventional generation unit, a photovoltaic generation unit and electric vehicles illustrate the effectiveness of the energy management system.
机译:本文为基于定价的电动汽车提供了一种能量管理系统。单位被建模为价格 - 弹性单位,价格 - 不弹性单位和电动车辆。价格由价格 - 弹性单位和电动车辆洽谈,使得所有单位的总成本在满足电力,能源和移动限制时最小化。谈判由一个价格协调员协调,该协调员确保电力平衡,同时有关价格无弹性单位的预测。该方法的基石是使用快速梯度法的双重分解。该方法使用分布式计算,确保单位的隐私,并且是即插即用的能力相对于单位。通过构建原始可行的次优溶液,可以减少通信和计算。具有传统一代单元的公司的智能电网模拟,光伏发电单元和电动车辆说明了能量管理系统的有效性。

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