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Control Mechanisms for Residential Electricity Demand in SmartGrids

机译:智能电网中居民用电的控制机制

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We consider mechanisms to optimize electricity consumption both within a home and across multiple homes in a neighborhood. The homes are assumed to use energy management controllers (EMCs) to control the operation of some of their appliances. EMCs, which are a feature of the emerging SmartGrid, use both prices and user preferences to control power usage across the home. We first present a simple optimization model for determining the timing of appliance operation to take advantage of lower electricity rates during off-peak periods. We then demonstrate, using simulation, that the resulting solution may in fact be more peaky than the ``non-scheduled'' solution, thereby negating some of the benefits (for the utility) of off-peak pricing models. We then propose a distributed scheduling mechanism to reduce peak demand within a neighborhood of homes. The mechanism provides homes a guaranteed base level of power and allows them to compete for additional power to meet their needs. Finally, we introduce a more powerful EMC optimization model, based on dynamic programming, which, unlike our first optimization model, accounts for the potential for electricity capacity constraints.
机译:我们考虑了一种机制,可以优化一个家庭内部以及附近多个家庭之间的电力消耗。假设这些房屋使用能源管理控制器(EMC)来控制其某些电器的运行。 EMC是新兴SmartGrid的功能之一,它使用价格和用户偏好来控制整个家庭的用电情况。我们首先提出一个简单的优化模型,用于确定设备运行的时间,以在非高峰时段利用较低的电费。然后,我们通过仿真证明,所得解决方案实际上可能比``非计划''解决方案更具尖锐性,从而抵消了非高峰定价模型的某些好处(对于公用事业而言)。然后,我们提出了一种分布式调度机制,以减少房屋附近的高峰需求。该机制为房屋提供了保证的基本功率水平,并使他们可以竞争其他功率以满足他们的需求。最后,我们引入了基于动态编程的功能更强大的EMC优化模型,该模型与我们的第一个优化模型不同,它可以解释潜在的电量限制。

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