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A Coordinated Control Strategy for a Diesel-Electric Tugboat System for Improved Fuel Economy

机译:柴油拖船系统改进燃油经济性的协调控制策略

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摘要

Recent growth in seaborne trade has increased the tugboat operation cycle to maneuver incoming marine vessels at port. To meet the tugboat load demand for maneuvering, multiple power sources are being employed on-board. This necessitates a coordinated control strategy for the effective operation of these multiple power sources. To design an effective coordinated control strategy, this article initially estimates multiple power sources capacities (doubly fed induction machine (DFIM) and battery storage system) for a diesel-electric tugboat system based on a real-time tugboat operation cycle obtained from Visakhapatnam port, India. With respect to these multiple power sources, a coordinated control strategy for a better fuel efficiency is proposed based on a state machine control algorithm. The proposed control strategy operates a variable speed diesel-electric generator (diesel engine coupled DFIM) at a minimum specific fuel consumption value and battery based on its state of charge. To show the efficacy of the proposed variable speed diesel-electric system, fuel consumption is computed, which resulted in 26.42% of saving in comparison with a traditionally used diesel-mechanical tugboat. To evaluate the real-time system (2 MW DFIM + 150 kWh battery), MATLAB/Simulink tool is used and an experimental demonstration is performed on a laboratory prototype.
机译:海运贸易的最近增长增加了拖船运营周期,以便在港口进行机动入境的海洋船舶。为了满足拖轮负荷对机动的需求,在板上采用多个电源。这需要协调控制策略,用于这些多电源的有效操作。为了设计有效的协调控制策略,本文最初估计基于从Visakhapatnam端口获得的实时拖船操作周期的柴油电拖船系统(印度。关于这些多电源,基于状态机控制算法提出了一种用于更好的燃料效率的协调控制策略。所提出的控制策略基于其充电状态,在最小特定的燃料消耗值和电池中操作变速柴油发电机(柴油发动机耦合DFIM)。为了表明所提出的可变速度柴油系统的功效,计算燃料消耗,导致与传统使用的柴油机械拖船相比,节省的26.42%。为了评估实时系统(2 MW DFIM + 150 kWh电池),使用Matlab / Simulink工具,对实验室原型进行实验演示。

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