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Self-optimal Piecewise Linearization Based Network Power Flow Constraints in Electrical Distribution System Optimization

机译:配电系统优化中基于自最优分段线性化的网络潮流约束

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As a representative mathematical expression of power flow (PF) constraints in electrical distribution system (EDS), the piecewise linearization (PWL) based PF constraints have been widely used in different EDS optimization scenarios. However, the linearized approximation errors originating from the currently-used PWL approximation function can be very large and thus affect the applicability of the PWL based PF constraints. This letter analyzes the approximation error self-optimal (ESO) condition of the PWL approximation function, refines the PWL function formulas, and proposes the self-optimal (SO)-PWL based PF constraints in EDS optimization which can ensure the minimum approximation errors. Numerical results demonstrate the effectiveness of the proposed method.
机译:作为配电系统(EDS)中潮流(PF)约束的一种代表性数学表达式,基于分段线性化(PWL)的PF约束已广泛用于不同的EDS优化方案中。但是,源自当前使用的PWL逼近函数的线性化逼近误差可能非常大,因此会影响基于PWL的PF约束的适用性。这封信分析了PWL逼近函数的逼近误差自最优(ESO)条件,细化了PWL函数公式,并提出了EDS优化中基于自最优(SO)-PWL的PF约束,可以确保最小逼近误差。数值结果证明了该方法的有效性。

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