标题: | 非线性控制系统, 采用“状态相关(微分形式)Riccati 方程式”设计 Nonlinear control systems, a “state-dependent (differential) Riccati equation ”approach |
作者: | 林立冈 Lin, Li-Gang 梁耀文 Liang, Yew-Wen 电控工程研究所 |
关键字: | 状态相关(微分形式)Riccati方程式;非线性控制系统;状态相关系数矩阵;State-dependent (differential) Riccati equation;nonlinear control system;state-dependent coefficient matrix |
公开日期: | 2014 |
摘要: | 在非线性控制系统领域,近来提出一种易于实现的控制手法“状态相关Riccati方程式”,成功应用在许多实际例子上。具备多样的功能和潜力,并克服一些现存非线性控制手法所无法面对的难题。成功应用的领域包括飞弹、航空载具、卫星、船舶、无人飞行载具、生医工程系统、工业电子、排程控制、水下载具、和机器人。与他相似的控制手法“状态相关微分形式Riccati方程式”,近来也引起诸多兴趣并被广泛研究,从理论分析或实际应用等角度上均拥有不错的潜力,并与“状态相关Riccati方程式”控制手法共享诸多设计上的优点,差别主要在于考虑的时间范围(“状态相关Riccati方程式”考虑无限时间范围;“状态相关微分形式Riccati方程式”考虑有限时间范围)。然而,针对此两种新颖的控制手法,目前尚十分缺乏严谨扎实的理论基础,来支持诸多的实际应用,特别是所拥有的设计自由度(状态相关系数矩阵的不唯一性),及其如何影响系统的表现,等都是学者专家关心且积极研究的课题。在这篇博士论文中,考虑一般阶数非线性时变系统,诸多与此设计自由度相关的重要议题将被探讨并提出可行的解决办法,在初期控制器设计上将扮演关键角色。最后,所提出的结果将与文献上诸多不同主题的贡献相互参照,试图找出关联性和相似性。最后,透过许多代表性的例子(包括现实生活中的实际应用)模拟所提出的结果,佐证结果的正确性和可行性。 In the area of nonlinear control systems, recently the easy-to-implement state-dependent Riccati equation (SDRE) strategy has been shown to be effective by numerous practical applications, possessing collectively many of the capabilities and overcoming many of the difficulties of other nonlinear control methods. Its diverse fields of applications include missiles, aircrafts, satellites, ships, unmanned aerial vehicles (UAV), biomedical systems analysis, industrial electronics, process control, autonomous maneuver of underwater vehicles, and robotics. Due to the great similarity to SDRE, the newly emerged state-dependent differential Riccati equation (SDDRE) approach exhibits great potential from both the analytical and practical viewpoints, and shares most of the benefits of SDRE while differing mainly in the time horizon considered (i.e. finite for SDDRE and infinite for SDRE). However, there is a significant lack of theoretical fundamentals to support all the successful implementations, especially the feasible choice of the possessed design flexibility (namely, iv the infinitely many factorizations of the state-dependent coefficient matrix) with predictable performance is still under development for both schemes. In this thesis, considering the general finite-order nonlinear time-variant systems, several problems related to the design flexibility are investigated and solved, which appear at the very beginning of the implementation of both schemes. Finally, connections to the literature in various topics of research are established, and the proposed scheme is demonstrated via examples, including real-world applications. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079912801 http://hdl.handle.net/11536/125886 |
显示于类别: | Thesis |