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Towards Cooperative Grids: Sensor/Actuator Networks for Renewables Integration

机译:对合作网格:可再生能源集成的传感器/执行器网络

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Faced with an uncertain path forward to renewables portfolio standard (RPS) goals and the high cost of energy storage, we believe that deep demand side management must be a central strategy to achieve widespread penetration of renewable energy sources. We examine the variability of wind as a source of renewable, non-dispatchable energy and the loads that can be dispatched to match sources of this type. We identify two classes of dispatchable energy loads, and create models for these loads to match their consumption to the generation of energy sources, while introducing {em slack}, a generalized measure of dispatchability of energy. From these load models, we examine a number of techniques and considerations for source-following loads, including the sensitivity of thermostat constraints and the effects of aggregating appliance populations. Our results show a home heater that is able to reduce energy consumption by over 50% while increasing the proportion of renewable energy consumed versus grid energy.
机译:与前一个不确定的路径,可再生能源比例标准(RPS)目标和储能的成本高面前,我们认为深需求侧管理必须要实现可再生能源的广泛渗透的中心战略。我们研究风的变异可再生,不可调度的能量来源,并且可以被分派到符合这种类型的源负载。我们确定了两个班分派能源负荷,创造模型,这些负载以满足他们的消费能源的产生,同时引进{EM懈怠},能源dispatchability的普遍措施。从这些负荷模型,我们检查源跟随负载,包括恒温器的约束的灵敏度和聚合设备群的影响的许多技术和方面的考虑。我们的研究结果表明家庭加热器,能够超过50%,以减少能源消耗,同时增加消费对电网能源可再生能源的比例。

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