首页> 外文会议>2012 IEEE PES Transmission and Distribution Conference and Exposition >Using high-speed demand response of building HVAC systems to smooth cloud-driven intermittency of distributed solar photovoltaic generation
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Using high-speed demand response of building HVAC systems to smooth cloud-driven intermittency of distributed solar photovoltaic generation

机译:利用建筑HVAC系统的高速需求响应来平滑由云驱动的分布式太阳能光伏发电的间歇性

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The penetration level of distributed solar photovoltaic (PV) generation is rapidly increasing as a consequence of incentives, renewable portfolio standards, decrease in the cost of devices and other factors. If the peak power rating of PV systems in a particular distribution feeder is above a certain fraction of the feeder's capacity, it can be difficult to maintain power quality without resorting to support devices such as batteries, flywheels or capacitors. The high cost of these support devices increases the levelised energy cost of PV electricity. In this study, a method to absorb a substantial fraction of the power spectrum related to solar intermittency using controllable loads in HVAC systems is described. In particular, the focus is on modulating the speed of fan motors in such a way that, while temperature control in the building is maintained, the intermittent component of PV generation is absorbed, as close as possible to its source. First, the power spectrum of PV generation is characterized for a variety of cloud cover conditions. Second, a high-fidelity model of a building is used to optimize the operating parameters of the fan control strategy. Third, experimental verification of the strategy's effectiveness is performed. It is shown that fan control can absorb a substantial fraction of the energy associated with PV intermittency at very low cost, thereby reducing the size of smoothing systems, such as batteries, which are nevertheless needed to absorb the high-frequency band of the intermittency spectrum.
机译:由于激励措施,可再生能源投资组合标准,设备成本下降和其他因素的影响,分布式太阳能光伏(PV)发电的渗透水平正在迅速提高。如果特定配电馈线中的光伏系统的峰值额定功率高于馈线容量的某个分数,则不借助电池,飞轮或电容器之类的辅助设备可能难以保持电能质量。这些支撑装置的高成本增加了PV电力的平均能源成本。在这项研究中,描述了一种在HVAC系统中使用可控负载来吸收与太阳能间歇性有关的大部分功率谱的方法。特别地,重点在于以这样的方式调节风扇电动机的速度,即在维持建筑物中的温度控制的同时,吸收光伏发电的间歇性成分,并尽可能靠近其来源。首先,针对各种云层覆盖条件表征了光伏发电的功率谱。其次,建筑物的高保真模型用于优化风扇控制策略的运行参数。第三,对策略的有效性进行实验验证。结果表明,风扇控制可以以非常低的成本吸收与PV间歇性相关的大部分能量,从而减小了平滑系统(如电池)的尺寸,但这些系统仍需要吸收间歇性频谱的高频段。

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