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首页> 外文期刊>International journal of aerospace engineering >Design of Composite Feedback and Feedforward Control Law for Aircraft Inertially Stabilized Platforms
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Design of Composite Feedback and Feedforward Control Law for Aircraft Inertially Stabilized Platforms

机译:用于飞机惯性稳定平台的复合反馈和馈电控制法的设计

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The design of the control systems of the inertially stabilized platforms (ISPs) as part of airborne equipment for the majority of aircraft has its peculiarity. The presence of rate gyros in the inertial measurement unit gives the possibility to measure the rotation rate of the ISP base, which is the main disturbance interfering with the ISP accuracy. Inclusion of the feedforward disturbance gain in the control law with the simplest PI feedback significantly improves the accuracy of stabilization by the invariance theory. A combination of feedback and feedforward controllers produces a synergetic effect, thus, improving ISP accuracy. This article deals with the design of the airborne ISP control systems consisting of two stages: the parametric optimization of the PI feedback control based on composite “performance-robustness” criterion and the augmentation of the obtained system with feedforward gain. To prove the efficiency of the proposed control laws, the simulation of the ISP was undertaken. We have used a simulation of the heading-hold system of the commuter aircraft Beaver and the yaw rate output of this closed-loop system we have used as a source of the disturbance. The results of modeling proved the efficiency of the proposed design method.
机译:作为大多数飞机的空气传播设备的一部分,惯性稳定平台(ISP)的控制系统的设计具有其特殊性。惯性测量单元中的速率陀螺仪的​​存在提供了测量ISP基底的旋转速率的可能性,这是干扰ISP精度的主要扰动。在控制法中包含最简单的PI反馈在控制定律中的馈送干扰增益显着提高了不变性理论的稳定精度。反馈和前馈控制器的组合产生了协同效果,从而提高了ISP精度。本文涉及由两个阶段组成的机载ISP控制系统的设计:基于复合“性能 - 稳健性”标准的PI反馈控制的参数优化以及所获得的系统具有前馈增益的增强。为了证明拟议的控制法的效率,采用了ISP的模拟。我们已经使用了通勤飞机BEAVER的标题系统的仿真和这种闭环系统的横摆率输出,我们用作干扰的源泉。建模结果证明了所提出的设计方法的效率。

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