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Second-order cone AC optimal power flow: convex relaxations and feasible solutions

机译:二阶锥交流最优电流:凸松弛和可行的解决方案

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Optimal power flow (OPF) is the fundamental mathematical model to optimize power system operations. Based on conic relaxation, Taylor series expansion and McCormick envelope, we propose three convex OPF models to improve the performance of the second-order cone alternating current OPF (SOC-ACOPF) model. The underlying idea of the proposed SOC-ACOPF models is to drop assumptions of the original SOC-ACOPF model by convex relaxation and approximation methods. A heuristic algorithm to recover feasible ACOPF solution from the relaxed solution of the proposed SOC-ACOPF models is developed. The proposed SOC-ACOPF models are examined through IEEE case studies under various load scenarios and power network congestions. The quality of solutions from the proposed SOC-ACOPF models is evaluated using MATPOWER (local optimality) and LINDOGLOBAL (global optimality). We also compare numerically the proposed SOC-ACOPF models with other two convex ACOPF models in the literature. The numerical results show robust performance of the proposed SOCACOPF models and the feasible solution recovery algorithm.
机译:最佳功率流(OPF)是优化电力系统操作的基本数学模型。基于圆锥形松弛,泰勒系列扩展和麦考克封套,我们提出了三种凸孔型模型,提高了二阶锥交流OPF(SOC-ACOPF)模型的性能。所提出的SOC-ACOPF模型的潜在思想是通过凸松弛和近似方法丢弃原始SOC-ACOPF模型的假设。开发了一种从所提出的SOC-ACOPF模型的松弛解决方案中恢复可行的ACOPF解决方案的启发式算法。通过各种负载方案和电网拥塞,通过IEEE案例研究检查所提出的SoC-ACOPF模型。使用MATPOWER(局部最优性)和Lindoglobal(全球最优性)评估所提出的SOC-ACOPF模型的解决方案质量。我们还在数字上与文献中的其他两个凸射频模型进行了数字上提出的Soc-ACOPF型号。数值结果显示了所提出的SoCacoPF模型的强大性能和可行的解决方案恢复算法。

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