Hardware Implementation of NB PHY Baseband Transceiver for IEEE 802.15.6 WBAN

被引:0
|
作者
Mathew, Priya [1 ]
Augustine, Lismi [1 ]
Kushwaha, Deepak [1 ]
Vivian, D. [1 ]
Selvakumar, David [1 ]
机构
[1] CDAC, UCHR Grp, Bangalore, Karnataka, India
来源
2014 INTERNATIONAL CONFERENCE ON MEDICAL IMAGING, M-HEALTH & EMERGING COMMUNICATION SYSTEMS (MEDCOM) | 2015年
关键词
WBAN; IEEE; 802.15.6; NB PHY; VHDL; BCH; pi/2; DBPSK; wireless communication;
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
This paper presents the FPGA implementation of Narrowband Physical Layer architecture for Wireless Body Area Network (WBAN) based on IEEE 802.15.6-2012 standard. An abstract level hardware implementation of the most matured Narrowband (NB) PHY operating at 2.4 GHz ISM band among the three PHY layers defined by the standard is proposed. Major building blocks of PHY transceiver such as CRC, spreader, interleaver and scrambler were individually designed and integrated. To avoid the inherent limitation of the data transmission and to achieve higher reliability especially for medical applications, BCH (63, 51, 2) encoder and decoder is integrated to the design. Before modulation, spreading technique is employed and supports pi/2 DBPSK modulation. The transceiver achieves a data rate of 121.4 kbps and packet size of 256 bits. The design has been simulated in Questa 10.1.d, synthesized in Xilinx ISE 14.4 and successfully implemented and tested on ML605 Evaluation Board through PCIe interface. The proposed design can interact with Microblaze processor and the board can be interfaced with Analog Devices FMCCommunication Board, AD-FCOMMS1-EBZ.
引用
收藏
页码:64 / 71
页数:8
相关论文
共 50 条
  • [31] Hardware implementation of secure and lightweight Simeck32/64 cipher for IEEE 802.15.4 transceiver
    Bhoyar, Prachin
    Dhok, S. B.
    Deshmukh, R. B.
    AEU-INTERNATIONAL JOURNAL OF ELECTRONICS AND COMMUNICATIONS, 2018, 90 : 147 - 154
  • [32] Performance exploration of on-body WBAN using CM3A-IEEE 802.15.6 channel model
    Sindhu Hak Gupta
    Niveditha Devarajan
    Journal of Ambient Intelligence and Humanized Computing, 2023, 14 : 5761 - 5772
  • [33] IEEE 802.15.6: Physical Layer Implementation and Evaluation of Medical Bands for ns-3
    Oza, Drishti
    Ramonet, Alberto Gallegos
    Yoshida, Masami
    Noguchi, Taku
    2023 28TH ASIA PACIFIC CONFERENCE ON COMMUNICATIONS, APCC 2023, 2023, : 99 - 106
  • [34] Performance Analysis of IEEE 802.15.6 CSMA/CA Protocol for WBAN Medical Scenario through DTMC Model
    Vivek Kumar
    Bharat Gupta
    Journal of Medical Systems, 2016, 40
  • [35] DESIGN AND IMPLEMENTATION OF IEEE 802.16 BASEBAND SYSTEM ON FPGA
    Gu, Chen
    Li, Xu
    PROCEEDINGS OF 2011 INTERNATIONAL CONFERENCE ON COMMUNICATION TECHNOLOGY AND APPLICATION, ICCTA2011, 2011, : 872 - 876
  • [36] Joint PHY-MAC Realistic Performance Evaluation of Body-to-Body Communication in IEEE 802.15.6 and SmartBAN
    Khan, Rida
    Alam, Muhammad Mahtab
    2018 12TH INTERNATIONAL SYMPOSIUM ON MEDICAL INFORMATION AND COMMUNICATION TECHNOLOGY (ISMICT), 2018, : 128 - 133
  • [37] Optimal relaying nodes selection for IEEE 802.15.6-based two-hop star topology WBAN
    Das, Kamal
    Ray, Rajarshi
    Moulik, Soumen
    INTERNET OF THINGS, 2023, 22
  • [38] Design and DSP software implementation of mobile WiMAX baseband transceiver functions
    Wang, Hai-wei
    Lin, David W.
    Hungi, Kun-Chien
    Lee, Youn-Tai
    EMERGING DIRECTIONS IN EMBEDDED AND UBIQUITOUS COMPUTING, PROCEEDINGS, 2007, 4809 : 181 - +
  • [39] Mixed-signal demodulator for IEEE 802.15.6 IR-UWB WBAN energy detection-based receiver
    Jajodia, Babita
    Mahanta, Anil
    Ahamed, Shaik Rafi
    IET CIRCUITS DEVICES & SYSTEMS, 2018, 12 (05) : 523 - 531
  • [40] An IEEE 802.15.6 Standard Compliant 2.5 nJ/Bit Multiband WBAN Transmitter Using Phase Multiplexing and Injection Locking
    Rahman, Mustafijur
    Elbadry, Mohammad
    Harjani, Ramesh
    IEEE JOURNAL OF SOLID-STATE CIRCUITS, 2015, 50 (05) : 1126 - 1136