Design Methodology for Industrial Internet-of-Things Wireless Systems

被引:9
|
作者
Costa, Carlos Mendes da, Jr. [1 ]
Baltus, Peter [1 ]
机构
[1] Eindhoven Univ Technol, Dept Elect Engn, NL-5612 Eindhoven, Netherlands
基金
欧盟地平线“2020”;
关键词
Wireless communication; Wireless sensor networks; Design methodology; Reliability; Receivers; Bandwidth; Industrial IoT; WSN; URLCC; IIoT-WS; MCDA; system design; Pareto front; multi-objective optimization; reliable communications; low power; low latency; ARCHITECTURE; WSN;
D O I
10.1109/JSEN.2020.3031659
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The ubiquity foreseen by the Internet-of-Things (IoT) and powered by the 5G advancements has motivated research on wireless solutions for critical applications, in particular, Industrial IoT (IIoT). Nevertheless, there is little or no research on a unified design methodology for IIoT that tackles the conflicting wireless system performances of Power, Latency, and Reliability (PLR). Obtaining such a framework is vital for empowering further development and fair comparison in future IIoT designs. Thereby, this paper presents a novel design methodology to tackle PLR trade-off in IIoT Wireless Systems (IIoT-WS). This new methodology uses a meet-in-the-middle system approach to design an entire PLR RF system, and a custom Multiple-Criteria Decision Analysis (MCDA) to help decide the best design variables that are both resource-efficient and PLR-balanced for a given application. Finally, to quantify the methodology for critical wireless systems, a lab-demonstrator for automotive application is designed and its performance compared to other wireless systems standards.
引用
收藏
页码:5529 / 5542
页数:14
相关论文
共 50 条
  • [31] Wireless Powered Mobile Edge Computing for Industrial Internet of Things Systems
    Wu, Hao
    Tian, Hui
    Nie, Gaofeng
    Zhao, Pengtao
    [J]. IEEE ACCESS, 2020, 8 : 101539 - 101549
  • [32] THE ANALYSIS OF THE INTERNET-OF-THINGS INDUSTRIAL CHAIN BASED ON HYPERCYCLE THEORY
    Xiong, Qian
    Lv, Xiyan
    Liang, Yanchun
    [J]. ICEIS 2011: PROCEEDINGS OF THE 13TH INTERNATIONAL CONFERENCE ON ENTERPRISE INFORMATION SYSTEMS, VOL 4, 2011, : 513 - 517
  • [33] Design of Beamspace Massive Access for Cellular Internet-of-Things
    Jia, Rundong
    Chen, Xiaoming
    Ng, Derrick Wing Kwan
    Lin, Hai
    Zhang, Zhaoyang
    [J]. ICC 2019 - 2019 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS (ICC), 2019,
  • [34] Design of Software Defined Networking Gateway for the Internet-of-Things
    A. Ruhan Bevi
    P. Shakthipriya
    S. Malarvizhi
    [J]. Wireless Personal Communications, 2019, 107 : 1273 - 1287
  • [35] Data-Driven Synchronization for Internet-of-Things Systems
    Bennett, Terrell R.
    Gans, Nicholas
    Jafari, Roozbeh
    [J]. ACM TRANSACTIONS ON EMBEDDED COMPUTING SYSTEMS, 2017, 16 (03)
  • [36] Special Issue on Internet-of-Things for Smart Energy Systems
    Chau, Sid Chi-Kin
    Schwefel, Hans-Peter
    Wong, Vincent W. S.
    Zhang, Ying-Jun Angela
    [J]. IEEE INTERNET OF THINGS JOURNAL, 2019, 6 (05): : 7334 - 7336
  • [37] Design of Software Defined Networking Gateway for the Internet-of-Things
    Bevi, A. Ruhan
    Shakthipriya, P.
    Malarvizhi, S.
    [J]. WIRELESS PERSONAL COMMUNICATIONS, 2019, 107 (02) : 1273 - 1287
  • [38] Health Systems with Resilient Reporting based on Internet-of-Things
    Melo, Yuri
    Borges, Vinicius C. M.
    Oliveira-Jr, Antonio
    Dalmazo, Bruno L.
    Riker, Andre
    [J]. IWCMC 2021: 2021 17TH INTERNATIONAL WIRELESS COMMUNICATIONS & MOBILE COMPUTING CONFERENCE (IWCMC), 2021, : 353 - 357
  • [39] Toward energy efficient microcontrollers and Internet-of-Things systems
    Al-Kofahi, Majd M.
    Al-Shorman, Mohammad Y.
    Al-Kofahi, Osameh M.
    [J]. COMPUTERS & ELECTRICAL ENGINEERING, 2019, 79
  • [40] Editorial: Planning and operation of integrated energy systems with deep integration of pervasive industrial internet-of-things
    Luo, Fengji
    Mu, Yunfei
    Liang, Gaoqi
    Zhang, Yongxi
    Yang, Linfeng
    [J]. FRONTIERS IN ENERGY RESEARCH, 2023, 10