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Optimal Planning and Operation Management of a Ship Electrical Power System with Energy Storage System

机译:储能系统船舶电力系统优化规划与运行管理

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摘要

Next generation power management at all scales is highly relying on the efficient scheduling and operation of different energy sources to maximize efficiency and utility. The ability to schedule and modulate the energy storage options within energy systems can also lead to more efficient use of the generating units. This optimal planning and operation management strategy becomes increasingly important for off-grid systems that operate independently of the main utility, such as microgrids or power systems on marine vessels. This work extends the principles of optimal planning and economic dispatch problems to shipboard systems where some means of generation and storage are also schedulable. First, the question of whether or how much energy storage to include into the system is addressed. Both the storage power rating in MW and the capacity in MWh are optimized. Then, optimal operating strategy for the proposed plan is derived based on the solution from a mixed-integer nonlinear programming (MINLP) problem. Simulation results showed that including well-sized energy storage options together with optimal operation management of generating units can improve the economic operation of the test system while meeting the system’s constraints.
机译:各种规模的下一代电源管理高度依赖于不同能源的有效调度和操作,以最大限度地提高效率和实用性。在能源系统中调度和调节能量存储选项的能力还可以导致发电机组的更有效利用。对于独立于主要设施运行的离网系统,例如微电网或船舶上的电力系统,这种最佳的计划和运营管理策略变得越来越重要。这项工作将最佳计划和经济调度问题的原理扩展到了船上系统,在该系统中还可以计划一些发电和存储方式。首先,解决是否将能量存储包括在系统中的问题。既优化了以兆瓦为单位的额定存储功率,又优化了以兆瓦时为单位的容量。然后,基于混合整数非线性规划(MINLP)问题的解决方案,得出了拟议计划的最佳运行策略。仿真结果表明,将适当大小的储能选项与发电机组的最佳运行管理结合在一起,可以在满足系统约束的同时提高测试系统的经济运行效率。

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