• DocumentCode
    1788557
  • Title

    Designing the MIMO SDR-based LPD transceiver for long-range robot control applications

  • Author

    Fokin, Grigoriy ; Volgushev, Dmitry ; Kireev, Artem ; Bulanov, Danil ; Lavrukhin, Vladimir

  • Author_Institution
    Res. & Educ. Center for Wireless Commun., Bonch-Bruevich St. Petersburg Univ. of Telecommun., St. Petersburg, Russia
  • fYear
    2014
  • fDate
    6-8 Oct. 2014
  • Firstpage
    456
  • Lastpage
    461
  • Abstract
    There is a huge growth in robot control applications over the past years. One of the main challenges in such applications is the radio link between a control point and a robot. To improve the range of the link most available control systems use 433 MHz Low Power Devices (LPD) band for communication. Required distance between a robot and control point for our application is 10 km. Achieving this distance is a challenge when multipath propagation is present. Our Matlab simulation demonstrates that 2*2 Multiple Input Multiple Output (MIMO) Alamouti scheme allows to gain more than 10 dB comparing with Single Input Single Output (SISO). Link budget calculations show that we can achieve even more than 10 km distance using 2*2 MIMO scheme. High precision Agilent hardware and SystemVue software were used for performance evaluation of the radio link and system architecture. To prototype the system we used USRP B210 Software Defined Radio (SDR) hardware due to huge variety of supportive platforms and convenient type of connectivity.
  • Keywords
    MIMO communication; UHF devices; performance evaluation; radio links; radio transceivers; robots; software radio; telecommunication computing; LPD band; MIMO SDR-based LPD transceiver design; Matlab simulation; SDR hardware; SISO system; SystemVue software; USRP B210 software defined radio; control point; distance 10 km; frequency 433 MHz; high precision Agilent hardware; link budget calculations; long-range robot control; low power devices; multipath propagation; multiple input multiple output Alamouti scheme; performance evaluation; radio link; single input single output system; system architecture; Bit error rate; Hardware; MIMO; Radio link; Receiving antennas; Software; Transceivers; 433 MHz; LPD; MIMO 2∗2; Robot control; SDR;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Ultra Modern Telecommunications and Control Systems and Workshops (ICUMT), 2014 6th International Congress on
  • Conference_Location
    St. Petersburg
  • Type

    conf

  • DOI
    10.1109/ICUMT.2014.7002144
  • Filename
    7002144