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Estimating Power Pump Loads and Sizing Generators for Ship Electrical Load Analysis

机译:估算动力泵负载和选型发电机,以进行船舶电气负载分析

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One of the most basic tasks for ship power system design is electrical load analysis, which is used to determine the required installed capacity of on-board power generators. Traditionally, the analysis is carried out based on considerations of investment cost and supply adequacy, while using a design of generators with the same rating. It does not consider the energy efficiency, thereby in some cases resulting in the generators operated at a lower efficiency under heavy loading conditions and high energy consumption. To enhance power generation efficiency and reduce energy cost, a new load analysis method for marine vessels is proposed in this paper. The relationship of operating efficiency and load factor of generators is mathematically modeled and considered in the analysis. The problem is formulated as a nondifferential combinational optimization problem, where the total generation cost during a whole voyage is minimized subject to system operation and technical constraints, in order to derive the optimal generator rated power and unit commitment using genetic algorithms. The results confirmed the validity of the proposed method through load analysis of a practical ship power system, as well as energy-saving benefits using the proper generator rated power and an accurate load model for power pumps.
机译:船舶电力系统设计的最基本任务之一是电气负载分析,该电气负载分析用于确定所需的车载发电机装机容量。传统上,分析是基于投资成本和供应充足性的考虑而进行的,同时使用具有相同额定值的发电机设计。它没有考虑能源效率,因此在某些情况下会导致发电机在重载条件和高能耗下以较低的效率运行。为了提高发电效率,降低能源成本,提出了一种新的船舶负荷分析方法。对发电机的运行效率和负载系数的关系进行了数学建模,并在分析中加​​以考虑。该问题被表述为非微分组合优化问题,其中在整个航程中的总发电成本受系统操作和技术约束的影响降至最低,以便使用遗传算法得出最优的发电机额定功率和机组承诺。结果通过实际船舶动力系统的负荷分析证实了该方法的有效性,并通过使用适当的发电机额定功率和准确的动力泵负荷模型来节省能源。

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