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Digital robust control law synthesis using constrained optimization

机译:使用约束优化的数字鲁棒控制律综合

摘要

Development of digital robust control laws for active control of high performance flexible aircraft and large space structures is a research area of significant practical importance. The flexible system is typically modeled by a large order state space system of equations in order to accurately represent the dynamics. The active control law must satisy multiple conflicting design requirements and maintain certain stability margins, yet should be simple enough to be implementable on an onboard digital computer. Described here is an application of a generic digital control law synthesis procedure for such a system, using optimal control theory and constrained optimization technique. A linear quadratic Gaussian type cost function is minimized by updating the free parameters of the digital control law, while trying to satisfy a set of constraints on the design loads, responses and stability margins. Analytical expressions for the gradients of the cost function and the constraints with respect to the control law design variables are used to facilitate rapid numerical convergence. These gradients can be used for sensitivity study and may be integrated into a simultaneous structure and control optimization scheme.
机译:为主动控制高性能柔性飞机和大型空间结构而开发的数字鲁棒控制定律是一个具有重大实际意义的研究领域。柔性系统通常由方程的大阶状态空间系统建模,以便准确表示动力学。主动控制法则必须满足多个相互矛盾的设计要求,并保持一定的稳定性余量,但也应足够简单,以在车载数字计算机上实现。在此描述的是使用最佳控制理论和约束优化技术的通用数字控制律综合程序在此类系统中的应用。线性二次高斯型成本函数通过更新数字控制定律的自由参数而被最小化,同时试图满足对设计载荷,响应和稳定性裕度的一组约束。成本函数的梯度和控制律设计变量的约束条件的解析表达式用于促进快速数值收敛。这些梯度可用于灵敏度研究,并可集成到同时的结构和控制优化方案中。

著录项

  • 作者

    Mukhopadhyay Vivekananda;

  • 作者单位
  • 年度 1989
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  • 原文格式 PDF
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