Hierarchical finite state machines for autonomous mobile systems

被引:54
作者
Kurt, Arda [1 ]
Oezguener, Uemit [1 ]
机构
[1] Ohio State Univ, Elect & Comp Engn Dept, Columbus, OH 43210 USA
基金
美国国家科学基金会;
关键词
Autonomous vehicles; Hybrid-state systems; Hierarchical systems; Urban scenarios; Cyber-physical systems;
D O I
10.1016/j.conengprac.2012.09.020
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
This paper proposes a system architecture, related design approaches for autonomous mobile systems and guidelines for self-sufficient autonomy. Development of a tiered layout for a hybrid-state control in a series of stages as well as the integration of such a controller in the overall autonomy structure are proposed and demonstrated as part of multiple examples, including The Ohio State University participation in DARPA Urban Challenge 2007. The hierarchical layout and the iterative design methodology enable a certain level of design flexibility for the overall system and preparation for various contingencies, as illustrated on specific development cycles. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:184 / 194
页数:11
相关论文
共 50 条
  • [21] An Ontology Model for Communicating with an Autonomous Mobile Platform
    Cupek, Rafal
    Ziebinski, Adam
    Fojcik, Marcin
    BEYOND DATABASES, ARCHITECTURES AND STRUCTURES: TOWARDS EFFICIENT SOLUTIONS FOR DATA ANALYSIS AND KNOWLEDGE REPRESENTATION, 2017, 716 : 480 - 493
  • [22] Toward Fog-Based Mobile Crowdsensing Systems: State of the Art and Opportunities
    Belli, Dimitri
    Chessa, Stefano
    Kantarci, Burak
    Foschini, Luca
    IEEE COMMUNICATIONS MAGAZINE, 2019, 57 (12) : 78 - 83
  • [23] Synthesis of hierarchical systems
    Aminof, Benjamin
    Mogavero, Fabio
    Murano, Aniello
    SCIENCE OF COMPUTER PROGRAMMING, 2014, 83 : 56 - 79
  • [24] Distributed Collaborative Control of Multi-Vehicle Autonomous Cooperative Transportation Systems: A Hierarchical Constraint-Following Approach
    Zhang, Bowei
    Huang, Jin
    Su, Yanzhao
    Chen, Ye-Hwa
    Yang, Diange
    Zhong, Zhihua
    IEEE TRANSACTIONS ON INTELLIGENT TRANSPORTATION SYSTEMS, 2024, 25 (05) : 4251 - 4264
  • [25] HIERARCHICAL PATH-PLANNING FOR A MOBILE ROBOT
    JOHNSON, CM
    GRAY, JO
    ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE, 1994, 7 (02) : 137 - 149
  • [26] A Description and Analysis Method for Reconfigurable Production Systems Based on Finite State Automaton
    Boschi, Filippo
    Tavola, Giacomo
    Taisch, Marco
    SERVICE ORIENTATION IN HOLONIC AND MULTI-AGENT MANUFACTURING, 2017, 694 : 349 - 358
  • [27] Cybersecurity and Forensics in Connected Autonomous Vehicles: A Review of the State-of-the-Art
    Sharma, Prinkle
    Gillanders, James
    IEEE ACCESS, 2022, 10 : 108979 - 108996
  • [28] Advances in the Hierarchical Emergent Behaviors (HEB) Approach to Autonomous Vehicles
    Roca, Damian
    Milito, Rodolfo
    Nemirovsky, Mario
    Valero, Mateo
    IEEE INTELLIGENT TRANSPORTATION SYSTEMS MAGAZINE, 2020, 12 (04) : 57 - 65
  • [29] Hierarchical Model Predictive Control for Autonomous Vehicle Area Coverage
    Ibrahim, M.
    Matschek, J.
    Morabito, B.
    Findeisen, R.
    IFAC PAPERSONLINE, 2019, 52 (12): : 79 - 84
  • [30] Hierarchical Perception Enhancement for Different Levels of Autonomous Driving: A Review
    Zha, Yuanyuan
    Wei, Shangguan
    Chai, Linguo
    Chen, Jingjing
    IEEE SENSORS JOURNAL, 2024, 24 (11) : 17366 - 17386