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Investigation of Rainfall Forecast System Characteristics in Real-Time Optimal Operation of Urban Drainage Systems

机译:城市排水系统实时最优运行中降雨预测系统特征研究

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This study investigates the role of rainfall forecast system characteristics in predictive real-time optimal operation (PRTOP) of urban drainage systems (UDSs). A simulation-optimization model is proposed integrating the stormwater management rainfall-runoff simulator, the harmony search optimization algorithm, and a rainfall forecasting module. This module generates different rainfall forecast scenarios depending on the forecast (time) horizon (FH) and the forecast type (perfect or imperfect). Five adaptive PRTOP models are compared to evaluate the relationships between the FH, forecast type, and the system's relative regulating capacity (SRRC). The models are tested in a part of UDS of Tehran, capital of Iran. Results indicate that for the studied system, perfect knowledge of future rainfall is more beneficial for a specific range of the SRRC, equal to 80-90% of its upper bound. Besides, the performance of the PRTOP model improves with increasing the FH up to a certain point, and then having no further positive effect. Finally, the PRTOP model equipped with a hypothetical forecasting model where the forecast error is a nonlinear function of the forecast lead time still performs better than both a zero-FH reactive RTOP model and short forecast horizon PRTOP models.
机译:本研究调查了降雨预测系统特征在城市排水系统(UDSS)的预测实时最优运行(PRTOP)中的作用。建议将仿真优化模型集成了雨水管理降雨 - 径流模拟器,和声搜索优化算法和降雨预测模块。根据预测(时间)地平线(FH)和预测类型(完美或不完美),该模块产生不同的降雨预测情景。比较五种自适应PRTOP模型,以评估FH,预测类型和系统的相对调节能力(SRRC)之间的关系。该模型在伊朗首都德黑兰UDS的一部分测试。结果表明,对于研究的系统,对未来降雨的完美了解对SRRC的特定范围更有益,等于其上限的80-90%。此外,PRTOP模型的性能随着达到某一点的增加而改善,然后没有进一步的积极效果。最后,PRTOP模型配备了假设的预测模型,其中预测误差是预测误差的非线性函数仍然比零FH反应性RTOP模型和短预测地平线PRTOP模型更好地执行。

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