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Short term hydroelectric scheduling combining network flow and interior point approaches

机译:结合网络流量和内点法的短期水电调度

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In this paper, short term hydroelectric scheduling is formulated as a network flow optimization model and solved by interior point methods. The primal-dual and predictor-corrector versions of such interior point methods are developed and the resulting matrix structure is explored. This structure leads to very fast iterations since it avoids computation and factorization of impedance matrices. For each time interval, the linear algebra reduces to the solution of two linear systems, either to the number of buses or to the number of independent loops. Either matrix is invariant and can be factored off-line. As a consequence of such matrix manipulations, a linear system which changes at each iteration has to be solved, although its size is reduced to the number of generating units and is not a function of time intervals. These methods were applied to IEEE and Brazilian power systems, and numerical results were obtained using a MATLAB implementation. Both interior point methods proved to be robust and achieved fast convergence for all instances tested.
机译:本文将短期水力发电调度表述为网络流量优化模型,并通过内点法求解。开发了这种内点方法的原始对偶和预测校正模型,并探索了所得的矩阵结构。由于这种结构避免了阻抗矩阵的计算和分解,因此可导致非常快速的迭代。对于每个时间间隔,线性代数都减少为两个线性系统的解,或者减少为总线数量,或者减少为独立回路的数量。矩阵都是不变的,可以离线进行分解。这种矩阵运算的结果是,必须解决在每次迭代中都发生变化的线性系统,尽管它的大小减小到了生成单元的数量,并且不是时间间隔的函数。这些方法应用于IEEE和巴西电力系统,并使用MATLAB实现获得了数值结果。两种内点方法均被证明是可靠的,并且对于所有测试实例均实现了快速收敛。

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