具有规定性能的海面船只鲁棒容错动态定位技术

IF 7.9 1区 工程技术 Q1 ENGINEERING, CIVIL IEEE Transactions on Intelligent Transportation Systems Pub Date : 2024-08-30 DOI:10.1109/TITS.2024.3447673
Jin-Xi Zhang;En-Yuan Cui;Tianyou Chai
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引用次数: 0

摘要

研究了具有传感器故障和未知动态以及随机干扰的海面舰船的容错动态定位问题。预计故障系统的必要性能仍然保持,特别是对于故障后的阶段,这在文献中仍然是开放的。本文提出了一种容错规定性能控制方法来解决这一问题。当传感器发生故障时,DP误差在预先选择的性能包络内演化,从而以规定的速度和精度实现DP。它对未知的船舶动力学和海洋扰动也具有固有的鲁棒性。因此,消除了对部分已知的容器非线性和可微扰动的一般假设。另一方面,不需要干扰估计、参数识别、函数逼近、故障检测、故障隔离或故障估计,从而使控制简单。最后,在Cybership II上进行了两组对比仿真,验证了所提方法的可行性和优越性。
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Robust Fault-Tolerant Dynamic Positioning of Marine Surface Vessels With Prescribed Performance
This paper is concerned with the problem of fault-tolerant dynamic positioning (DP) for the marine surface vessels with sensor faults and unknown dynamics as well as random disturbances. It is anticipated that the requisite performance for the faulty system still holds, especially for the post-fault phrase, which remains open in the literature. In this paper, a fault-tolerant prescribed performance control approach is put forward to solve the problem. It achieves DP with the prescribed speed and accuracy in the sense that the DP errors evolve within the preselected performance envelops whenever the sensor faults happen. It is also inherently robust against the unknown vessel dynamics and ocean disturbances. Thus, the common assumptions on the partially known vessel nonlinearities and the differentiable disturbances are eliminated. On the other hand, there is no need for disturbance estimation, parameter identification, function approximation, fault detection, fault isolation or fault estimation, yielding a control simplicity. Finally, a pair of comparative simulations on Cybership II are carried out to validate the feasibility and advantage of the proposed approach.
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来源期刊
IEEE Transactions on Intelligent Transportation Systems
IEEE Transactions on Intelligent Transportation Systems 工程技术-工程:电子与电气
CiteScore
14.80
自引率
12.90%
发文量
1872
审稿时长
7.5 months
期刊介绍: The theoretical, experimental and operational aspects of electrical and electronics engineering and information technologies as applied to Intelligent Transportation Systems (ITS). Intelligent Transportation Systems are defined as those systems utilizing synergistic technologies and systems engineering concepts to develop and improve transportation systems of all kinds. The scope of this interdisciplinary activity includes the promotion, consolidation and coordination of ITS technical activities among IEEE entities, and providing a focus for cooperative activities, both internally and externally.
期刊最新文献
Table of Contents Corrections to “Toward Infotainment Services in Vehicular Named Data Networking: A Comprehensive Framework Design and Its Realization” IEEE Intelligent Transportation Systems Society Information IEEE INTELLIGENT TRANSPORTATION SYSTEMS SOCIETY Scanning the Issue
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