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Day-ahead optimal dispatch of an integrated energy system considering time-frequency characteristics of renewable energy source output

机译:考虑可再生能源输出的时频特性的集成能源系统的一天最佳调度

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摘要

The intermittency and uncertainty output of renewable energy source (RES) poses a challenge for the optimal dispatch of an integrated energy system (IES). Many current studies focus on the time-domain characteristics of the RES prediction, while ignoring the time-frequency characteristics of the prediction, thus the operation is usually scheduled on a uniform time-step. Based on this context, an adaptive hybrid dispatch time-step (AHDT) determination method based on the time-frequency characteristics of the prediction is proposed. Different from the traditional time-step, AHDT is non-uniform. Firstly, the Hilbert-Huang transform is used to convert the predicted RES output data to the time-frequency. Next, a time-step function which reflects the mapping of time-step and instantaneous frequency is constructed to suggest an adaptive time-step in each dispatch segment. Then, an optimal day-ahead dispatch model of a typical IES with AHDT, which is essentially a mixed integer quadratic programming (MIQP) problem, is established. Finally, the day-ahead schedules of each unit are obtained by solving the MIQP problem. The simulations are conducted in a total of twenty randomly selected days. The results show that the AHDT method is superior to the uniform time-step method for its effect in reducing the operating cost and the optimization-calculating time cost.
机译:可再生能源(RES)的间歇性和不确定性输出对集成能量系统(IE)的最佳调度构成了挑战。许多目前的研究侧重于res预测的时域特性,同时忽略预测的时频特性,因此操作通常在均匀的时间步骤上调度。基于此上下文,提出了一种基于预测的时间频率特性的自适应混合分量时间步骤(AHDT)确定方法。不同于传统的时间步,AHDT是不均匀的。首先,Hilbert-Huang变换用于将预测的RES输出数据转换为时频。接下来,构造反映时间步骤和瞬时频率的映射的时间步骤功能以在每个调度段中提出自适应时间步骤。然后,建立了具有AHDT的典型IE的最佳日子前方调度模型,其基本上是混合整数二次编程(MIQP)问题。最后,通过解决MIQP问题来获得每个单元的日期时间表。仿真总共进行了二十个随机选择的日子。结果表明,AHDT方法优于均匀的时间步长方法,以降低运行成本和优化计算时间成本。

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