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Robust unit commitment with characterised solar PV systems

机译:具有特征太阳能光伏系统的强大单位承诺

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This article addresses a critical issue on the robust unit commitment (RUC), which is the construction of an accurate and reliable uncertainty set for solar photovoltaic (PV) systems. The classic robust unit commitment (CRUC) provides an inaccurate and unreliable model for the highly intermittent solar generations. However, the authors' proposed uncertainty set utilises the forecast models that rely on the clear-sky and overcast solar forecasts, which are more accurate and reliable. The uncertainty set for solar generations is constructed based on the type of day, levels of daily uncertainty index (DUI) and daily energy index (DEI), and the uncertainty level of solar ramps. The test results on the IEEE 118-bus test system demonstrate that (i) using DEI and DUI reliably and efficiently manages and reduces the cost for highly uncertain and overcast day compared to the CRUC and (ii) the RUC cost is much sensitive to the selected level of DUI and DEI than the uncertainty level of the solar ramps.
机译:本文讨论了强大的单位承诺(RUC)的关键问题,该问题是建造用于太阳能光伏(PV)系统的准确可靠的不确定性。经典的强大单位承诺(CRUC)为高度间歇性的太阳代代提供了不准确和不可靠的模型。然而,作者提出的不确定性集采用依赖于清晰天空和阴云密布的太阳能预测的预测模型,这更准确可靠。对于太阳代代的不确定性,基于日常不确定性指数(DUI)和日常能量指数(DEI)的类型,以及太阳坡道的不确定性水平来构建。 IEEE 118-BUS测试系统的测试结果证明(i)使用DEI和DUI可靠,有效地管理和降低与CRUC和(ii)相比高度不确定和阴云密布日的成本,并将RUC成本对其进行敏感所选择的DUI和DEI比太阳斜坡的不确定性水平。

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