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Adaptive thermostat control in residential buildings through uniform clearing price mechanism

机译:通过统一清算价格机制对住宅建筑物进行自适应恒温控制

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Demand response (DR) is potentially an effective tool in the smart grid that allows shifting electric load demand to less congested time slots. These peak-load shaving measures serve to alleviate grid congestion, minimize cost of electricity generation and help in reducing the electricity bills of retail customers. This work considers a demand response approach whereby the local electricity utility (aggregator or load serving entity) takes control of the thermostat of the buildings of participating customers and retains the right to regulate the temperature upto a user-defined amount when the grid is approaching overload conditions. A customers participating in this program declare its user discomfort index, which is a measure of the amount of money the customer expects in return from the utility for temporarily relinquishing its thermostat control. Based on these declared values and the thermal characteristics of the buildings (assumed to be known/estimated by utilities), the utility implements a selection algorithm to choose the least expensive buildings and controls their temperature in return for monetary compensation (or credits). We compare and study the properties of this DR mechanism under two different payment rules associated with: (a) the pay-as-you-bid mechanism, and (b) the uniform clearing price mechanism. Under a test scenario, we demonstrate that such mechanisms are able to bring down overall demand while ensuring the utility does not lose any money. It also ensures that participating customers get a discount on their monthly electricity bills while at the same time resulting in substantial peak-load shaving.
机译:需求响应(DR)可能是智能电网中的有效工具,可以将电力负载需求转移到较少拥挤的时隙。这些调峰措施可减轻电网拥堵,将发电成本降至最低,并有助于降低零售​​客户的电费。这项工作考虑了一种需求响应方法,即当电网接近过载时,当地电力公司(集合商或负载服务实体)控制参与客户的建筑物的恒温器,并保留将温度调节到用户定义的数量的权利。条件。参与此程序的客户声明其用户不适指数,该指标衡量的是客户期望从公用事业获得的,暂时放弃其恒温器控制的回报的金额。基于这些声明的值和建筑物的热特性(假定由公用事业公司知道/估计),公用事业公司实施选择算法以选择最便宜的建筑物并控制其温度,以换取金钱补偿(或信用)。我们在两种不同的支付规则下比较和研究了该DR机制的性质,这些规则与以下各项相关:(a)“按需付费”机制,以及(b)统一清算价格机制。在测试场景下,我们证明了这种机制能够降低总体需求,同时确保公用事业不会损失任何资金。它还可以确保参与的客户在每月电费上获得折扣,同时还可以节省大量的高峰负荷。

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