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Multi-objective PSO based augmented control of a twin rotor system

机译:基于多目标PSO的双转子系统扩展控制

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摘要

Control of vibration suppressions is crucial for applications in engineering particularly in the area of aircraft system. An augmented control approach encompasses of using a feedforward intelligent command shaping technique with combination of intelligent PID feedback control is presented in this paper. The advantage of using command shaping is to reduce system vibration. However, it can cause delay in system response resulting to a conflict between vibration suppression and rise time response. Multi-objective particle swarm optimization with spread factor (MOPSO-SF) is employ in this paper to determine a set of solutions for the amplitudes and corresponding time locations of impulses on an extra sensitive (El) command shaping as well as gain parameters for the PID controller. The effectiveness of the proposed technique is assessed both in the time domain and the frequency domain. Moreover, a comparative assessment of the performance of the technique with the system response and unshaped finite step input is presented.
机译:抑制振动的控制对于工程中的应用至关重要,特别是在飞机系统领域。本文提出了一种增强控制方法,该方法包括将前馈智能命令整形技术与智能PID反馈控制相结合。使用命令整形的优点是减少系统振动。但是,由于振动抑制和上升时间响应之间的冲突,可能导致系统响应延迟。本文采用具有扩展因子(MOPSO-SF)的多目标粒子群优化算法,为超灵敏(El)命令整形上的脉冲幅度和相应的时间位置以及增益参数确定了一套解决方案。 PID控制器。在时域和频域均评估了所提出技术的有效性。此外,还对系统响应和不定形有限步输入的技术性能进行了比较评估。

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