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Management of linear quadratic regulator optimal control with full-vehicle control case study

机译:用全载体控制案例研究管理线性二次调节器最优控制

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摘要

Linear quadratic regulator is a powerful technique for dealing with the control design of any linear and nonlinear system after linearization of the system around an operating point. For small systems, which have fewer state variables, the transformation of the performance index from scalar to matrix form can be straightforward. On the other hand, as the system becomes large with many state variables and controllers, appropriate design and notations should be defined to make it easy to automatically implement the technique for any large system without the need to redesign from scratch every time one requires a new system. The main aim of this article was to deal with this issue. This article shows how to automatically obtain the matrix form of the performance index matrices from the scalar version of the performance index. Control of a full-vehicle in cornering was taken as a case study in this article.
机译:线性二次调节器是一种强大的技术,用于处理在系统周围系统的线性化后处理任何线性和非线性系统的控制设计。 对于具有较少状态变量的小系统,从标量到矩阵形式的性能指数的转换可能很简单。 另一方面,随着系统变大,随着许多状态变量和控制器,应定义适当的设计和符号,以便在每次需要新系统的情况下轻松地自动实现任何大型系统的技术,而无需重新设计 系统。 本文的主要目标是处理这个问题。 本文展示了如何从性能索引的标量版自动获取性能索引矩阵的矩阵形式。 在这篇文章中被认为是在转弯中的全载体的控制。

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