Thermostats for the Smart Grid: Models, Benchmarks, and Insights

David I. Levine, Yong Liang, Z. Shen
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引用次数: 39

Abstract

We model two existing thermostats and one novel thermostat to see how well they operate under dynamic pricing. The existing thermostats include a traditional thermostat with set temperature goals and a rigid thermostat that minimizes cost while always keeping temperature within a rigid predetermined range. We contrast both with a novel optimizing thermostat that finds the optimal trade-off between comfort and cost. We compare the thermostats’ performance both theoretically and via numerical simulations. The simulations show that, under plausible assumptions, the optimizing thermostat’s advantage is economically large. Importantly, the electricity demand of the rigid thermostat (but not the optimizing thermostat) ceases to respond to electricity prices on precisely the days when the electricity grid tends to be near capacity. These are the times when demand response is the most socially valuable to avoid massive price spikes. The social benefits of the optimizing thermostat may provide incentives for utilities and regulators to encourage its adoption.
智能电网的恒温器:模型,基准和见解
我们对两个现有的恒温器和一个新的恒温器进行了建模,以了解它们在动态定价下的运行情况。现有的恒温器包括一种具有设定温度目标的传统恒温器和一种刚性恒温器,它可以将成本降至最低,同时始终将温度保持在严格的预定范围内。我们将两者与一种新型的优化恒温器进行对比,该恒温器在舒适和成本之间找到了最佳权衡。我们从理论和数值模拟两方面比较了恒温器的性能。模拟表明,在合理的假设下,优化恒温器的经济优势是巨大的。重要的是,刚性恒温器(而不是优化恒温器)的电力需求在电网趋于接近容量的日子里不再对电价做出反应。在这些时候,需求反应对于避免大规模价格飙升最具社会价值。优化恒温器的社会效益可能会激励公用事业和监管机构鼓励其采用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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