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首页> 外文期刊>International journal of electrical power and energy systems >Reactive power optimization under interval uncertainty of renewable power generation based on a security limits method
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Reactive power optimization under interval uncertainty of renewable power generation based on a security limits method

机译:基于安全限制方法的可再生能源间隔不确定性下的无功功率优化

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With the integration of high penetration renewable power generation, the voltage security of power systems is threatened. The reactive power optimization including interval uncertainty (RPOIU) model is applied for developing a voltage control strategy to ensure that the state variables of a power grid reside within their safe operating limits under uncertainty of renewable power generation and load demand input data. However, the RPOIU model is not solved properly in terms of solution efficiency and optimization effect at present. This paper proposes a novel method for solving the RPOIU model, which is denoted as the security limits method (SLM). The proposed SLM first computes the security limits of the state variables of the RPOIU model using an interval power flow method, i.e., the optimizing-scenarios method, and then transforms the RPOIU model into a deterministic model whose constraints conform to the established security limits. The deterministic model is then efficiently solved using the interior point method. We verify that the voltage control strategy obtained by solving the deterministic model is able to ensure that the values of the state control variables satisfy the constraints of the original RPOIU model, but with more conservative security limits. This issue is addressed by modifying the security limits of the SLM through defining an interval ratio, and applying an iterative predictor-corrector procedure. The result obtained by the proposed SLM and modified SLM based on numerical simulations are compared with those obtained by a previously proposed method for effectively solving the RPOIU model, and analysis of the results demonstrates the advantages, effectiveness, and good applicability of the proposed SLM.
机译:随着高渗透可再生能源的集成,电力系统的电压安全受到威胁。应用包括间隔不确定性(RPOIU)模型的无功功率优化用于开发电压控制策略,以确保电网的状态变量在可再生发电和负载需求输入数据的不确定度下的安全操作限制内。然而,在目前的解决方案效率和优化效果方面,RPOIU模型尚未正确解决。本文提出了一种求解RPOIU模型的新方法,其表示为安全限制方法(SLM)。所提出的SLM首先使用间隔功率流方法计算RPOIU模型的状态变量的安全限制,即优化方案方法,然后将RPOIU模型转换为确定符合既定安全限制的确定性模型。然后使用内部点方法有效地解决了确定性模型。我们验证了通过解决确定性模型而获得的电压控制策略能够确保状态控制变量的值满足原始RPOIU模型的约束,而是具有更保守的安全限制。通过定义间隔比来修改SLM的安全限制来解决此问题,并应用迭代预测器校正器程序。将基于数值模拟的所提出的SLM和修改的SLM获得的结果与先前提出的方法得到有效解决RPOIU模型而获得的结果,并且结果分析表明了所提出的SLM的优点,有效性和适用性。

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