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Demand response control of residential HVAC loads based on dynamic electricity prices and economic analysis

机译:基于动态电价和经济分析的住宅HVAC负荷需求响应控制

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摘要

During peak hours, electrical loads of residential HVAC systems can cause imbalance between electricity supply and demand. Demand response control has the potential to facilitate supply-demand balance. The demand side load control can help reduce electricity consumption through demand response programs. Since HVAC loads are the major contributors to peak loads, reducing HVAC load at peak hours is an objective of many demand response technologies. This article analyzes performance of the dynamic thermostat controller of HVAC systems in homes that have dynamic price of electricity. Based on a price signal, the dynamic thermostat controller sets back the thermostat temperature to save electricity consumption and costs. The consumers choose participation in the demand response program based on the real-time price of electricity and set a threshold price that the thermostat uses to set the temperature during peak power price period. The performance of dynamic thermostat controller was analyzed for two cities, Austin TX and Chicago IL, and historical market price data were used to generate hourly based real-time price. In addition to different climate zones, two different types of residential buildings were modeled. Based on detailed energy simulation, the changes in HVAC system operation were analyzed when considering electric energy saving, peak power reduction, cost saving, as well as the potential thermal discomfort. The specific results show that dynamic pricing combined with dynamic thermostat controller results in 12% annual energy cost savings for HVAC operation with the energy saving of up to 6%, but without significantly changing the thermal comfort.
机译:在高峰时段,住宅HVAC系统的电力负荷会导致电力供需之间的不平衡。需求响应控制具有促进供需平衡的潜力。需求侧负载控制可以通过需求响应程序帮助减少电力消耗。由于HVAC负载是峰值负载的主要贡献者,因此在高峰时段减少HVAC负载是许多需求响应技术的目标。本文分析了具有动态电价的家庭中HVAC系统的动态恒温控制器的性能。动态恒温器控制器根据价格信号调回恒温器温度,以节省电力消耗和成本。消费者根据实时电力价格选择参与需求响应程序,并设置一个阈值价格,温控器使用该阈值来设置峰值电价期间的温度。分析了两个城市(奥斯汀TX和芝加哥IL)的动态恒温控制器的性能,并使用历史市场价格数据生成基于小时的实时价格。除了不同的气候区,还对两种不同类型的住宅建筑进行了建模。在详细的能源模拟的基础上,分析了HVAC系统运行的变化,同时考虑了节能,峰值功率降低,成本节省以及潜在的热不适感。具体结果表明,动态定价与动态恒温控制器相结合,可为HVAC运行每年节省12%的能源成本,节能高达6%,但不会显着改变热舒适度。

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