Discrete‐time Pontryagin maximum principle under rate constraints: Necessary conditions for optimality

IF 2.7 4区 计算机科学 Q2 AUTOMATION & CONTROL SYSTEMS
Siddhartha Ganguly, Souvik Das, Debasish Chatterjee, Ravi Banavar
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引用次数: 0

Abstract

SummaryLimited bandwidth and limited saturation in actuators are practical concerns in control systems. Mathematically, these limitations manifest as constraints imposed on the control actions, their rates of change, and, more generally, the global behavior of their paths. While the problem of actuator saturation has been studied extensively, little attention has been devoted to the problem of actuators having limited bandwidth. While attempts have been made in the direction of incorporating frequency constraints on state‐action trajectories before, rate constraints on the control at the design stage have not been studied extensively in the discrete‐time regime. This article contributes toward filling this lacuna: We establish a new discrete‐time Pontryagin maximum principle with rate constraints imposed on the control trajectories and derive first‐order necessary conditions for optimality. A brief discussion on the existence of optimal control is also included.
速率约束下的离散时间庞特里亚金最大原则:最优化的必要条件
摘要 执行器的有限带宽和有限饱和度是控制系统中的实际问题。从数学角度看,这些限制表现为对控制动作、其变化率以及更广泛意义上的路径全局行为施加的约束。虽然对执行器饱和问题进行了广泛研究,但很少有人关注执行器带宽有限的问题。虽然以前曾尝试过在状态-动作轨迹中加入频率约束,但在离散时间机制中,设计阶段的控制速率约束尚未得到广泛研究。本文有助于填补这一空白:我们建立了一个新的离散时间庞特里亚金最大原理,对控制轨迹施加速率约束,并推导出最优的一阶必要条件。文章还简要讨论了最优控制的存在性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Asian Journal of Control
Asian Journal of Control 工程技术-自动化与控制系统
CiteScore
4.80
自引率
25.00%
发文量
253
审稿时长
7.2 months
期刊介绍: The Asian Journal of Control, an Asian Control Association (ACA) and Chinese Automatic Control Society (CACS) affiliated journal, is the first international journal originating from the Asia Pacific region. The Asian Journal of Control publishes papers on original theoretical and practical research and developments in the areas of control, involving all facets of control theory and its application. Published six times a year, the Journal aims to be a key platform for control communities throughout the world. The Journal provides a forum where control researchers and practitioners can exchange knowledge and experiences on the latest advances in the control areas, and plays an educational role for students and experienced researchers in other disciplines interested in this continually growing field. The scope of the journal is extensive. Topics include: The theory and design of control systems and components, encompassing: Robust and distributed control using geometric, optimal, stochastic and nonlinear methods Game theory and state estimation Adaptive control, including neural networks, learning, parameter estimation and system fault detection Artificial intelligence, fuzzy and expert systems Hierarchical and man-machine systems All parts of systems engineering which consider the reliability of components and systems Emerging application areas, such as: Robotics Mechatronics Computers for computer-aided design, manufacturing, and control of various industrial processes Space vehicles and aircraft, ships, and traffic Biomedical systems National economies Power systems Agriculture Natural resources.
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