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A new realistic optimization-free economic load dispatch method based on maps gathered from sliced fuel-cost curves

机译:基于切片燃料成本曲线收集的地图的一种新的现实优化的经济负担调度方法

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Many methods have been introduced as economic load dispatchers. However, all these methods depend on the optimization field, where most of these studies mainly focus on how to strengthen the optimization algorithms themselves. This means the mystery key that segregate between the good and bad ELD solvers is the optimization algorithm itself. However, there is a practical fact known in many real power stations that the generators set-points, assigned by automation centers, are actually in discrete form. Thus, the solutions presented in the literature are infeasible if they are seen from this practical point of view. One of the approaches is to use combinational optimization algorithms. Because most of ELD problems have limited number of generating units, so all the solutions can be extracted by slicing the fuel-cost function of each unit in order to have a full map of all feasible solutions. Based on that, the exact optimal solution as well as all other best solutions can be easily obtained by this method. The main challenge that could be faced with this optimization-free method is when the dimension of the given ELD problem is large, because the discrete search space exponentially increases as the number of variables or/and slicing resolution increases. This challenge can be avoided if that ELD problem is correctly formulated based on real configurations of electric power stations. Some numerical experiments are given to illustrate the mechanism of the proposed technique.
机译:许多方法被引入为经济负担调度员。然而,所有这些方法都依赖于优化领域,其中大多数研究主要关注如何加强优化算法本身。这意味着在良好和坏的ELD求解器之间隔离的神秘键是优化算法本身。然而,在许多实际电站中有一个实际的事实,即自动化中心分配的发电机设定点实际上是以离散形式的。因此,如果从这个实际的角度看,文献中呈现的解决方案是不可行的。其中一个方法是使用组合优化算法。由于大多数ELD问题的生成单元数量有限,因此可以通过切割每个单元的燃料成本函数来提取所有解决方案,以便具有所有可行解决方案的完整地图。基于此,通过该方法可以轻松获得精确的最佳解决方案以及所有其他最佳解决方案。可以面对这种优化方法的主要挑战是当给定的ELD问题的维度很大,因为随着变量的数量或/和切片分辨率的增加,离散搜索空间呈指数增大。如果基于电力站的实际配置正确配制了该ELD问题,则可以避免此挑战。给出了一些数值实验来说明所提出的技术的机制。

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