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Efficient linear network model for TEP based on piecewise McCormick relaxation

机译:基于分段麦考密克松弛的高效TEP线性网络模型

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摘要

This study presents a novel scheme for transmission expansion planning (TEP) based on piecewise McCormick relaxation. The model presented considers investment and operation cost and identifies the transmission lines to be built. Since the AC power flow equations are inherently non-convex and non-linear, the resulting TEP model will be a highly complex optimisation problem, in which the optimal global solution is not guaranteed to be found by the existing techniques. This study aims to transform the non-linear model of the power network into a novel linear one. The model proposed is much more precise compared with the DC approach, while the global solution is guaranteed to be found by the off-the-shelf solvers. This accurate transformation from a non-convex and non-linear AC-TEP formulation into a linear-TEP model enables the planner to get more insight into the power flow of the power system. The TEP problem is formulated as a mixed-integer linear programming problem and is solved using the efficient commercial solvers. The results of the case studies show the tractability and exactness of the proposed model as well as its superiority over the state-of-the-art schemes.
机译:这项研究提出了一种基于分段McCormick松弛的传输扩展计划(TEP)的新方案。提出的模型考虑了投资和运营成本,并确定了要建造的输电线路。由于交流潮流方程本质上是非凸的和非线性的,因此所得的TEP模型将是一个高度复杂的优化问题,其中不能保证通过现有技术找到最佳的全局解。这项研究旨在将电力网络的非线性模型转变为一种新颖的线性模型。与DC方法相比,提出的模型要精确得多,而全局解决方案则可以由现成的求解器找到。从非凸和非线性AC-TEP公式到线性TEP模型的这种精确转换,使计划人员可以更深入地了解电力系统的功率流。将TEP问题公式化为混合整数线性规划问题,并使用高效的商用求解器进行求解。案例研究的结果表明了所提出模型的易处理性和准确性,以及其相对于最新方案的优越性。

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