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Minimizing communication cost for demand response using state estimation

机译:使用状态估计将需求响应的通信成本降至最低

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Demand Response (DR) is widely considered to be an integral part of future energy systems with high renewable energy penetration. Fast and reliable DR schemes require appropriate communication infrastructure. By limiting both the data sent and the measurements taken, the marginal cost of adding a load unit to the DR scheme can be reduced so that it becomes economically viable to utilize small loads such as hot-water boilers for DR. This paper presents an estimation and control topology for DR relying only on measurements of aggregated power and oneway communication. By using a state observer based on particle filtering and by switching individual loads based on comparing a drawn random number to a broadcast switching signal, accurate tracking of a reference signal can be achieved. In a case study it is shown that employing the proposed algorithms on a basic Smart Meter infrastructure enables the utility to significantly reduce overall cost by avoiding consumption of balancing energy.
机译:需求响应(DR)被广泛认为是具有高可再生能源渗透率的未来能源系统的组成部分。快速可靠的灾难恢复方案需要适当的通信基础结构。通过限制发送的数据和进行的测量,可以减少将负载单元添加到DR方案中的边际成本,从而利用诸如热水锅炉之类的小负载进行DR变得经济可行。本文提出了一种仅基于总功率测量和单向通信的DR估计和控制拓扑。通过使用基于粒子滤波的状态观察器以及通过基于将绘制的随机数与广播切换信号进行比较来切换单个负载,可以实现对参考信号的精确跟踪。在一个案例研究中表明,在基本的智能电表基础设施上采用建议的算法,可使公用事业公司通过避免消耗平衡能源来显着降低总体成本。

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