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Small-signal model predictive control based resilient energy storage management strategy for all electric ship MVDC voltage stabilization

机译:基于小信号模型预测控制的全电船MVDC稳压弹性能量存储管理策略

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摘要

Medium Voltage Direct Current (MVDC) power system will revolutionize the future of the marine all-electric ships (AES). However, with the presence of the constant power load (CPL), which behaves as incremental negative resistance, and the presence of heavy pulsed loads (HPL), that consume a massive amount of pulsed power, the voltage stability of the system arises as a critical problem. This problem needs to be addressed appropriately. This work presents a small signal model for a MVDC power system and design of a model predictive controller that maintains the voltage stability and ensures proper power sharing among the resources on the ship. Unlike previous works, the small signal model of the system is embedded inside the controller, which increases the flexibility of the controller to adapt to the different circumstances on the shipboard. The model and the controller are simulated through MATLAB/Simulink and validated using a processor in the loop. The results showed the ability of the controller to maintain the voltage of the MVDC under the different operational circumstances. Also, the controller was able to ensure the adequate operation of the resources and warrant proper power sharing.
机译:中压直流(MVDC)电力系统将彻底改变海上全电船(AES)的未来。但是,由于存在恒定功率负载(CPL)(其表现为负负电阻)和存在大量脉冲负载(HPL)(它们消耗大量脉冲功率),因此系统的电压稳定性会随着关键问题。这个问题需要适当解决。这项工作提出了一个用于MVDC电力系统的小信号模型,以及一个模型预测控制器的设计,该模型可保持电压稳定性并确保船上资源之间的适当功率共享。与以前的工作不同,系统的小信号模型被嵌入控制器内部,这增加了控制器的灵活性,以适应船上的不同情况。通过MATLAB / Simulink对模型和控制器进行仿真,并使用循环中的处理器对其进行验证。结果表明,在不同的操作环境下,控制器能够保持MVDC的电压。而且,控制器能够确保资源的适当运行并保证适当的功率共享。

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