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A Dynamic Programming Algorithm for Optimal Design of Tidal Power Plants

机译:一种动态规划算法,用于最优设计潮汐发电厂

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摘要

A dynamic programming algorithm is proposed and demonstrated on a test case to determine the optimum operating schedule of a barrage tidal power plant to maximize the energy generation over a tidal cycle. Since consecutive sets of high and low tides can be predicted accurately for any tidal power plant site, this algorithm can be used to calculate the annual energy generation for different technical configurations of the plant. Thus an optimal choice of a tidal power plant design can be made from amongst different design configurations yielding the least cost of energy generation. Since this algorithm determines the optimal time of operation of sluice gate opening and turbine gates opening to maximize energy generation over a tidal cycle, it can also be used to obtain the annual schedule of operation of a tidal power plant and the minute-to-minute energy generation, for dissemination amongst power distribution utilities.
机译:在测试案例上提出和演示了动态编程算法,以确定拖动潮汐发电厂的最佳操作时间表,以最大化潮汐循环的能量产生。 由于可以准确地预测到任何潮汐发电厂站点的连续高潮汐窗口,因此该算法可用于计算植物不同技术配置的年度能源产生。 因此,可以从不同的设计配置中制造出潮汐发电厂设计的最佳选择,从而产生了能量发电的最低成本。 由于该算法确定了闸门闸门开口和涡轮闸门开口的最佳操作时间,以最大化潮汐循环的能量产生,因此它也可用于获得潮汐发电厂的年度运行时间表和分钟 能源生成,用于传播公用事业的传播。

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