Error Probability Model for IEEE 802.15.4 Wireless Communication

被引:6
|
作者
Pesovic, Uros [1 ]
Planinsic, Peter [2 ]
机构
[1] Univ Kragujevac, Fac Tech Sci, Svetog Save 65, Cacak 32000, Serbia
[2] Univ Maribor, Fac Elect Engn & Comp Sci, Smetanova 17, Maribor 2000, Slovenia
关键词
IEEE; 802.15.4; error probability model; Rician fading channel; AWGN; wireless transmission; FADING CHANNELS;
D O I
10.1142/S0218126616501358
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Wireless transmission compliant to IEEE 802.15.4 standard can be significantly affected by background noise, multipath fading and interference from other radio sources. The influence of such disturbances is most commonly expressed in a form of error probability statistics. Accurate analytical error probability model is hard to acquire, since IEEE 802.15.4 standard uses imperfect spreading sequences. Some prior works in this field tend to idealize these imperfect spreading sequences in order to simplify calculations for error probability parameters. This paper presents an analytical error probability model for IEEE 802.15.4 communication in Rician fading channel, which uses original imperfect spreading sequences without their idealization. Proposed error probability model consists of mutually dependent chip, symbol, bit and packet error probability models. Presented theoretical results are confirmed by independent numerical simulation of IEEE 802.15.4 transmission through Rician fading channel according to the Monte Carlo method.
引用
收藏
页数:19
相关论文
共 50 条
  • [1] Error probability model for IEEE 802.15.4 wireless communications in the presence of co-channel interference
    Pesovic, Uros
    Planinsic, Peter
    [J]. PHYSICAL COMMUNICATION, 2017, 25 : 43 - 53
  • [2] Transmission Error Avoidance for IEEE 802.15.4 Wireless Sensors on Rotating Structures
    Wang, Kuang-Ching
    Jacob, Jobin
    Tang, Lei
    Huang, Yong
    [J]. 2008 PROCEEDINGS OF 17TH INTERNATIONAL CONFERENCE ON COMPUTER COMMUNICATIONS AND NETWORKS, VOLS 1 AND 2, 2008, : 869 - +
  • [3] Experimental Evaluation of IEEE 802.15.4 OFDM for Wireless IoT Communication Systems
    Nakura, Keito
    Ishibashi, Naoki
    Masaki, Hiroko
    Mizutani, Keiichi
    Harada, Hiroshi
    [J]. 2022 IEEE 33RD ANNUAL INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR AND MOBILE RADIO COMMUNICATIONS (IEEE PIMRC), 2022, : 1159 - 1164
  • [4] Transmission error analysis and avoidance for IEEE 802.15.4 wireless sensors on rotating structures
    Wang, Kuang-Ching
    Jacob, Jobin
    Tang, Lei
    Huang, Yong
    [J]. INTERNATIONAL JOURNAL OF SENSOR NETWORKS, 2009, 6 (3-4) : 224 - 233
  • [5] Clustered IEEE 802.15.4 Sensor Networks with Data Aggregation: Energy Consumption and Probability of Error
    Martalo, Marco
    Buratti, Chiara
    Ferrari, Gianluigi
    Verdone, Roberto
    [J]. IEEE WIRELESS COMMUNICATIONS LETTERS, 2013, 2 (01) : 70 - 73
  • [6] A Communication Approach for Parallel Data Fusion in IEEE 802.15.4 Wireless Sensor Networks
    Budke, Gerson F.
    Montez, Carlos
    Moraes, Ricardo
    Portugal, Paulo
    [J]. 2011 BRAZILIAN SYMPOSIUM ON COMPUTING SYSTEM ENGINEERING (SBESC), 2011, : 60 - 65
  • [7] Energy Efficient Coded Communication for IEEE 802.15.4 Compliant Wireless Sensor Networks
    V. Nithya
    B. Ramachandran
    Vidhyacharan Bhaskar
    [J]. Wireless Personal Communications, 2014, 77 : 675 - 690
  • [8] Energy Efficient Coded Communication for IEEE 802.15.4 Compliant Wireless Sensor Networks
    Nithya, V.
    Ramachandran, B.
    Bhaskar, Vidhyacharan
    [J]. WIRELESS PERSONAL COMMUNICATIONS, 2014, 77 (01) : 675 - 690
  • [9] A Dynamic Communication Approach for Data Fusion in IEEE 802.15.4 Wireless Sensor Networks
    Budke, Gerson F.
    Montez, Carlos
    Moraes, Ricardo
    Portugal, Paulo
    [J]. 2012 IEEE 17TH CONFERENCE ON EMERGING TECHNOLOGIES & FACTORY AUTOMATION (ETFA), 2012,
  • [10] Access probability analysis of IEEE802.15.4
    Wu Ling-xi
    Zhan Jie
    [J]. 2007 INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS, NETWORKING AND MOBILE COMPUTING, VOLS 1-15, 2007, : 472 - 475