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Decentralized Multi-Area Economic Dispatch via Dynamic Multiplier-Based Lagrangian Relaxation

机译:通过基于动态乘数的拉格朗日松弛法进行分散的多区域经济调度

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This paper introduces a dynamic multiplier-based Lagrangian relaxation approach for the solution to multi-area economic dispatch (MAED) in a fully decentralized manner. Dynamic multipliers refer to the multipliers associated with power balance equations at tie-line buses in each area. Dynamic multipliers can be approximated as linear functions of tie-line power exports via sensitivity analysis and can serve as the equivalent supply/demand functions to neighboring areas. In contrast to the conventional static point-wise multiplier, which is unable to reflect the marginal cost change that results from variations in the power exchange level, the proposed dynamic multiplier provides each area the look-ahead capability to foresee the range of the marginal cost for power export over a range of tie-line exchange variations. In turn, this allows for a significantly faster convergence to the global optimal solution. The algorithm is also shown to be early termination friendly, which is very desirable in practice for ultra-large systems such as the State Grid of China. Numerical examples in a 6-bus system, a 3-area 354-bus IEEE system, and large test systems illustrate the benefits of the proposed algorithm.
机译:本文介绍了一种基于动态乘数的拉格朗日松弛方法,用于以完全分散的方式解决多区域经济调度(MAED)。动态乘数是指与每个区域的联络线母线上的功率平衡方程式相关的乘数。动态乘法器可以通过灵敏度分析近似为联络线电力输出的线性函数,并且可以用作邻近区域的等效供求函数。与传统的静态逐点乘法器无法反映由于功率交换水平变化而导致的边际成本变化相比,所提出的动态乘数为每个区域提供了预见能力以预测边际成本的范围用于在一系列联络线交换变量上输出电力。反过来,这可以大大加快收敛到全局最佳解决方案的速度。该算法还被证明具有早期终止友好性,这在实践中非常适合超大型系统(例如中国国家电网)。在6总线系统,3区域354总线IEEE系统和大型测试系统中的数值示例说明了该算法的优势。

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