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A Multi-time Reactive Power Optimization Under Interval Uncertainty of Renewable Power Generation by an Interval Sequential Quadratic Programming Method

机译:区间时序二次规划法在可再生发电区间不确定性下的多次无功优化

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摘要

Renewable energy sources are a significant means of addressing dwindling conventional fuels and have been increasingly incorporated in transmission power grids on a large scale. However, the uncertainty of renewable energy source power outputs threatens the voltage security of power grids, which restricts the full integration of these sources to some degree. To address this problem, this work employs the reactive power optimization incorporating interval uncertainties (RPOIU) model for the transmission systems. In the RPOIU model, state variables, including load voltages, reactive power generation, and bus angles, are regarded as variables with interval values. Meanwhile, to account for the fluctuation of the load demand and the renewable energy sources in multiple periods of one day, a multi-time RPOIU is proposed. The model seeks to obtain a day-ahead optimal voltage control strategy for ensuring that interval state variables remain within their operating limit constraints in each period of one day, as well for maintaining a low level of daily real power losses. To solve the multi-time RPOIU model, we propose the interval sequential quadratic programming method (ISQPM), which employs a second-order interval Taylor expansion. In addition, an improved interval power flow calculation method, i.e., the optimizing-scenarios method, is employed to obtain the accurate ranges of the interval variables, thus improving the convergence performance of the ISQPM. The quadratic penalty function incorporating the rounding-off process is proposed to deal with the discrete variables in the multi-time RPOIU model. Three cases are tested by simulation to demonstrate the effectiveness, good applicability, and robustness of the proposed method, particularly in comparison to the previously proposed linear approximation method.
机译:可再生能源是解决日益减少的传统燃料的重要手段,并且已越来越多地大规模地应用于传输电网中。然而,可再生能源电力输出的不确定性威胁了电网的电压安全,这在一定程度上限制了这些能源的全面整合。为了解决这个问题,这项工作对输电系统采用了无功功率优化,并加入了区间不确定性(RPOIU)模型。在RPOIU模型中,状态变量(包括负载电压,无功发电和母线角度)被视为具有间隔值的变量。同时,为了解决一天中多个时段的负荷需求和可再生能源的波动,提出了多次RPOIU。该模型试图获得一种提前一天的最佳电压控制策略,以确保间隔状态变量在一天的每个时段内都保持在其运行限制约束之内,并保持较低水平的每日有功功率损耗。为了解决多次RPOIU模型,我们提出了一种采用二阶区间泰勒展开的区间序列二次规划方法(ISQPM)。另外,采用一种改进的区间潮流计算方法,即优化方案方法,来获得区间变量的准确范围,从而提高了ISQPM的收敛性能。提出了结合舍入过程的二次罚函数,以处理多次RPOIU模型中的离散变量。通过仿真测试了三种情况,以证明该方法的有效性,良好的适用性和鲁棒性,特别是与先前提出的线性近似方法相比。

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