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首页> 外文期刊>Energy Conversion & Management >Unified solution of a non-convex SCUC problem using combination of modified Branch-and-Bound method with Quadratic Programming
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Unified solution of a non-convex SCUC problem using combination of modified Branch-and-Bound method with Quadratic Programming

机译:结合修正的分支定界法和二次规划法统一解决非凸SCUC问题

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摘要

In this paper, a new practical method is presented for solving the non-convex security constraint unit commitment (SCUC) problem in power systems. The accuracy of the proposed method is desirable while the shorter computation time makes it useful for SCUC solution of large-scale power systems, real-time market operation and long-term SCUC problems. The proposed framework allows inclusion of the valve point effects, warmth-dependent start-up costs, ramp rates, minimum up/down time constraints, multiple fuels costs, emission costs, prohibited operating zones and AC power flow limits in normal and contingency conditions. To solve the non-convex problem, combination of a modified Branch-and-Bound method with the Quadratic Programming is used as an optimization tool and a developed AC power flow algorithm is applied for considering the security and contingency concerns using the nonlinear/linear AC model. These modifications improve the convergence speed and solution precision of SCUC problem. In the proposed method, in contrast with traditional SCUC algorithms, unit commitment solution, checking and satisfying the security constraints are managed simultaneously. The obtained results are compared with other reported methods for investigating the effectiveness of the proposed method. Also, the proposed method is applied to an Iranian power system including 493 thermal units.
机译:本文提出了一种解决电力系统非凸安全约束单元承诺(SCUC)问题的实用方法。所提出的方法的准确性是所希望的,同时较短的计算时间使其对于大规模电力系统的SCUC解决方案,实时市场运营和长期的SCUC问题很有用。拟议的框架允许包括阀点效应,与温度相关的启动成本,斜坡率,最小上升/下降时间限制,多种燃料成本,排放成本,禁止的工作区域以及正常和应急条件下的交流潮流限制。为了解决非凸问题,将改进的分支定界方法与二次规划相结合用作优化工具,并使用开发的交流潮流算法使用非线性/线性交流考虑安全性和应急性问题模型。这些修改提高了SCUC问题的收敛速度和求解精度。与传统的SCUC算法相比,该方法可以同时管理单元承诺解决方案,检查和满足安全约束。将获得的结果与其他报告的方法进行比较,以研究该方法的有效性。而且,所提出的方法被应用于包括493个热单元的伊朗电力系统。

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