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首页> 外文期刊>Generation, Transmission & Distribution, IET >MILP branch flow model for concurrent AC multistage transmission expansion and reactive power planning with security constraints
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MILP branch flow model for concurrent AC multistage transmission expansion and reactive power planning with security constraints

机译:MILP分支流模型,用于同时进行AC多级传输扩展和具有安全约束的无功功率规划

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摘要

This study presents a mixed-integer linear programming (MILP) model to solve the simultaneous transmission network expansion planning (TNEP) and reactive power planning (RPP) problem. The proposed model considers reactive power, off-nominal bus voltage magnitudes, power losses, multistage expansion, and security constraints. The use of an MILP model guarantees convergence to optimality by using existing classical optimisation methods. In order to validate the approximation performed, the steady-state operation points were compared with those obtained using an AC load flow method. Garver's 6-bus system and a modified IEEE 118-bus system were used to show the precision and efficiency of the methodology. The results indicate that better expansion and generation plans are found by considering RPP simultaneously with the AC TNEP, when the solutions were compared with the plans of the TNEP using the AC model without RPP and the TNEP considering the DC model, with RPP conducted at a subsequent stage.
机译:本研究提出了一种混合整数线性规划(MILP)模型,以解决同时传输网络扩展规划(TNEP)和无功规划(RPP)问题。提出的模型考虑了无功功率,偏离标称的总线电压幅度,功率损耗,多级扩展和安全约束。 MILP模型的使用可通过使用现有的经典优化方法来保证收敛到最优性。为了验证所执行的近似,将稳态工作点与使用交流潮流方法获得的稳态工作点进行了比较。 Garver的6总线系统和改进的IEEE 118总线系统被用来展示该方法的精度和效率。结果表明,将解决方案与使用不带RPP的AC模型的TNEP计划和不考虑DC模型的TNEP并在RPP进行的情况下进行比较,可以将解决方案与TNEP计划和AC TNEP同时考虑,从而找到了更好的扩展和发电计划。后续阶段。

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