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Modeling and control of a marine diesel engine driving a synchronous machine and a propeller

机译:驱动同步机和螺旋桨的船用柴油机建模与控制

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摘要

In some designs of power systems for marine vessels, large-size or medium-size Diesel engine(s) is(are) used to drive one synchronous machine to generate electricity, and the main propeller, simultaneously, through a gear box. Such systems are subject to disturbances that may affect performance and fuel consumption. The most important disturbances occur due to the propeller torque, and load demand on the electric network. In this work, a simplified state-space model is suggested for such systems based on well known models of each component. The model considers the dynamics of the shaft, Diesel engine, and synchronous machine with the propeller in their simplest models. The output voltage and torque coefficient were modeled as uncertain parameters. Then, exploiting feedback linearization, two controllers were suggested for the proposed model to regulate the rotational speed of the shaft. Firstly, by pole placement. The second is a robust controller by mixed H/H synthesis. The results of the simulations of the proposed controller are presented and compared.
机译:在一些用于船舶动力系统的设计中,大号或中型柴油机用于驱动一台同步电机发电,而主螺旋桨则同时通过齿轮箱。此类系统容易受到干扰,可能会影响性能和燃油消耗。最重要的干扰是由于螺旋桨扭矩和电网上的负载需求引起的。在这项工作中,基于每个组件的众所周知的模型,为此类系统提出了简化的状态空间模型。该模型在最简单的模型中考虑了带有螺旋桨的轴,柴油机和同步机的动力学特性。将输出电压和扭矩系数建模为不确定参数。然后,利用反馈线性化,为该模型建议了两个控制器来调节轴的转速。首先,通过极点放置。第二个是混合H / H合成的鲁棒控制器。提出并比较了所提出的控制器的仿真结果。

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