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Improving solar-induced grid-level flexibility requirements using residential central utility plants

机译:使用住宅中央电路工厂提高太阳能诱导的网格级灵活性要求

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This study discusses the expansion of an existing central utility plant (CUP) optimization model to analyze the effectiveness of using a residential CUP in Austin, Texas for improving the integration of solar into the grid. The CUP equipment includes a simple-cycle gas turbine (SCGT), battery, chiller plant, and chilled water storage (CHS). The analysis is accomplished by analyzing three sensitivity scenarios. Scenario 1 exposes the CUP to increasingly expensive demand charges. Scenario 2 limits the CUP's allowable ramp rate. Scenario 3 prohibits the CUP from selling electricity and requires it to provide ramping support to counteract the large ramp rates that occur in the net load during the evening when solar production diminishes but load continues to rise. The CUP effectively uses a chiller plant with chilled water storage (CHS) to change its operational behavior and provide grid-support support services. This support is limited, however, as more stringent circumstances require the CUP to invest in expensive SCGT or battery equipment, or to curtail solar generation.
机译:本研究讨论了现有的中央电厂(杯)优化模型的扩展,分析了德克萨斯州奥斯汀的奥斯汀居民杯的有效性,以改善太阳能进入栅格。杯子设备包括简单循环燃气轮机(SCGT),电池,冷水机构和冷藏储水(CHS)。通过分析三种灵敏度方案来实现分析。场景1使杯子暴露于越来越昂贵的需求费用。场景2限制了杯子的允许坡度。场景3禁止杯子销售电力,并要求它提供斜坡支持,以抵消晚上在太阳能产量减少但负荷继续上升时在净负载中发生的巨大斜坡速率。该杯子有效地使用冷却器厂与冷藏储水(CHS)改变其操作行为,并提供网格支持支持服务。然而,这种支持有限,因为更严格的情况需要杯子投资昂贵的SCGT或电池设备,或者削减太阳能发电。

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