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首页> 外文期刊>Journal of Water Resources Planning and Management >Modeling of Generation Scheduling for Multiple Provincial Power Grids Using Peak-Shaving Indexes
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Modeling of Generation Scheduling for Multiple Provincial Power Grids Using Peak-Shaving Indexes

机译:使用峰值剃须指数对多个省级电网发电调度的建模

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摘要

Peak shaving is a common challenge facing most provincial power grids (PPGs) in China. This paper presents an optimization model for the generation scheduling of multiple PPGs using peak-shaving indexes. Loads and power structures were considered to develop four indexes for quantifying the comprehensive peak-shaving needs of a PPG. The peak and off-peak capacity indexes, which represent the upward and downward balance pressures during hours of heavy and light loads, respectively, are functions of the dispatchable power, load extrema, and reserves. The rapid response index is defined to reflect the load-tracking pressure from off-peak to peak hours or vice versa. The fluctuation smoothing index represents the need for flexible regulation in response to frequent load changes in opposite directions. These indexes are normalized and integrated to establish a multiobjective model for peak operations in PPGs, subject to transmission energy and network limitations. This model is transformed into a solvable mixed-integer nonlinear programming model using polynomial and linear approximations and is solved with a branch-and-bound-based method. The model was implemented for the generation scheduling of the Xiluodu Hydropower Plant, which serves two PPGs. Case studies showed that the developed indexes provide accurate guidance for producing day-ahead generation schedules and distributing power among PPGs. The peak-shaving pressures are significantly alleviated in terms of index changes compared to an existing model.
机译:峰值剃须是中国大多数省级电网(PPG)面临的共同挑战。本文介绍了使用峰值剃须索引的多个PPG的发电调度的优化模型。载荷和功率结构被认为是开发四个指标,用于量化PPG的综合峰值剃须需求。峰值和非峰值容量指标分别表示在重载和光负荷的小时数的向上和向下的平衡压力是可调度电源,负载极值和储备的功能。快速响应指数被定义为将负载跟踪压力反射到截止峰到高峰小时,反之亦然。波动平滑指数表示对响应频繁负载沿相反方向的频繁变化的灵活调节的需求。这些索引被标准化并集成以建立PPG中的峰值操作的多目标模型,但经过传输能量和网络限制。使用多项式和线性近似将该模型转换为可溶性混合整数非线性编程模型,并以基于分支和绑定的方法求解。该模型是为Xiluodu水电站的发电调度实施,该植物用于两种PPG。案例研究表明,发达的指标为生产日前一代时间表提供准确指导,并在PPG之间分配电力。与现有模型相比,在指数变化方面显着减轻了峰值剃须压力。

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