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A dynamic programming based fast computation Hopfield neural network for unit commitment and economic dispatch

机译:基于动态规划的快速计算Hopfield神经网络,用于机组承诺和经济调度

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This paper develops a new dynamic programming based direct computation Hopfield method for solving short term unit commitment (UC) problems of thermal generators. The proposed two step process uses a direct computation Hopfield neural network to generate economic dispatch (ED). Then using dynamic programming (DP) the generator schedule is produced. The method employs a linear input-output model for neurons. Formulations for solving the UC problems are explored. Through the application of these formulations, direct computation instead of iterations for solving the problems becomes possible. However, it has been found that the UC problem cannot be tackled accurately within the framework of the conventional Hopfield network. Unlike the usual Hopfield methods which select the weighting factors of the energy function by trials, the proposed method determines the corresponding factor using formulation calculation. Hence, it is relatively easy to apply the proposed method. The Neyveli Thermal Power Station (NTPS) unit II in India with three units having prohibited operating zone has been considered as a case study and extensive study has also been performed for power system consisting of 10 generating units.
机译:本文开发了一种新的基于动态规划的直接计算Hopfield方法来解决热电厂的短期机组承诺(UC)问题。所提出的两步过程使用直接计算的Hopfield神经网络来生成经济调度(ED)。然后使用动态编程(DP)生成发电机计划。该方法对神经元采用线性输入-输出模型。探索解决UC问题的公式。通过应用这些公式,可以直接计算而不是迭代来解决问题。然而,已经发现,在传统的霍普菲尔德网络的框架内不能精确地解决UC问题。与通常的Hopfield方法通过试验选择能量函数的加权因子不同,该方法通过公式计算确定相应的因子。因此,应用所提出的方法相对容易。案例分析认为印度的Neyveli热电厂II号机组(其中三个机组禁止运行区域)是一个案例研究,并且对包含10个发电机组的电力系统也进行了广泛的研究。

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