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Detailed reasoning and derivation of a convexificated quadratic approximation approach for the Security Constrained Optimal Power Flow

机译:凸起的二次近似方法的详细推理与衍生安全约束最优功率流量

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In comparison to state of the art relaxation and approximation approaches an enhanced convexificated quadratic approximation for the Security Constrained Optimal Power Flow (SCOPF) is reasoned and derived. The detailed graphic interpretations have a focus on convexity and accuracy. First, variables are divided into different types and nonlinear equality constraints of the SCOPF are eliminated by implementing a distributed slack. Second, the nonconvex parts of the resulting quadratically approximated functions are identified by eigenvalue analysis and convexificated with piecewise linearizations. Additionally new algorithms for fast calculation of the required Hessians are derived.
机译:与艺术的状态相比,逼近和近似接近安全约束最佳功率流(SCOPF)的增强的凸出的二次逼近(SCOPF)被推出并导出。详细的图形解释具有焦点对凸性和准确性。首先,通过实现分布式松弛来消除变量分为不同类型的不同类型,并且通过实现分布式弹性来消除SCOPF的非线性平等约束。其次,通过特征值分析识别得到的二次近似函数的非凸起部分,并凸出分段线性化。另外,推导出用于快速计算所需Hessians的新算法。

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