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Robust L2 Control Design for Controllable Phase Compounding Excitation System of Marine Diesel Engine Generator

机译:船用柴油机发电机相控励磁系统的鲁棒L2控制设计。

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Compared to the land power systems, the loads of the ship power systems have a egregious influence on the stability of the systems. The voltage stability of a ship power station is decided by the excitation system response characteristic of synchronous generator voltage regulation system. Furthermore, the dynamic loads and generators have high nonlinear and coupling interactions. In order to attenuate the impact on the frequency of Marine Diesel Engine Generator, voltage regulating control problem of marine power system under diffident working conditions is studied based on nonlinear L2 disturbance attenuation control. Firstly, the nonlinear relationships among the generators and the dynamic/static loads are deeply analysis based on mathematical models. Then the voltage regulation controller is designed by using Backstepping techniques and L2 disturbances attenuation methods, which seriously reduces the impact of disturbances. Lastly, simulations show that the designed controller is effective to reject the unknown external disturbances.
机译:与陆地电力系统相比,船舶电力系统的负载对系统的稳定性产生了巨大影响。船舶电站的电压稳定性取决于同步发电机调压系统的励磁系统响应特性。此外,动态负载和发电机具有很高的非线性和耦合作用。为了减轻对船用柴油发电机组频率的影响,基于非线性L2扰动衰减控制,研究了不同工况下船用电力系统的调压控制问题。首先,基于数学模型深入分析了发电机与动静载荷之间的非线性关系。然后采用Backstepping技术和L2干扰衰减方法设计调压控制器,从而大大降低了干扰的影响。最后,仿真表明所设计的控制器可以有效地抑制未知的外部干扰。

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