Throughput Maximization via Adjusting Packet Size of a Buffered Cognitive Radio User

被引:0
|
作者
El Shafie, Ahmed [1 ]
Khattab, Tamer [2 ]
机构
[1] Nile Univ, WINC, Giza, Egypt
[2] Qatar Univ, Elect Engn, Doha, Qatar
来源
2014 IEEE 25TH ANNUAL INTERNATIONAL SYMPOSIUM ON PERSONAL, INDOOR, AND MOBILE RADIO COMMUNICATION (PIMRC) | 2014年
关键词
Cognitive radio; stable throughput; queue stability; packets size; collision; multi-packet reception; sensing errors mitigatio; MULTIPLE-ACCESS; STABILITY;
D O I
暂无
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
In this paper, we investigate a cognitive scenario with one secondary user and one primary user. Users are assumed to be buffered terminals. Each user has certain arrival rate with certain packet size. We propose a scheme where the cognitive radio user (secondary user) may combine some of the arrived packets into a single larger packet or split each of them into smaller packets to increase its maximum mean stable arrival rate. We consider sensing errors and study two channel models; namely, collision channel model, where concurrent transmissions cause definite packets loss, and multi-packet reception channel model, where packet could survive from interference if the received signal-to-interference-and-noise-ratio is greater than a certain threshold. When the channel is a collision channel, the objective function of the optimization problem which characterizes the stability region is shown to be log-concave. The optimization problem can be easily converted to a concave program that can be solved efficiently and reliably. When the channel is a multi-packet channel model, the problem is a simple grid search over the divisors and multiples of the original packets size. The results show the gains of the proposed technique and demonstrate its ability to alleviate the sensing errors' negative impact on the secondary stable throughput.
引用
收藏
页码:1024 / 1029
页数:6
相关论文
共 50 条
  • [21] Resource Allocation for Throughput Maximization in Cognitive Radio Network with NOMA
    He, Xiaoli
    Song, Yu
    Xue, Yu
    Owais, Muhammad
    Yang, Weijian
    Cheng, Xinwen
    CMC-COMPUTERS MATERIALS & CONTINUA, 2022, 70 (01): : 195 - 212
  • [22] Throughput Maximization in Cognitive Radio Based Wireless Mesh Networks
    Zhao, Yanchao
    Wu, Jie
    Lu, Sanglu
    2011 - MILCOM 2011 MILITARY COMMUNICATIONS CONFERENCE, 2011, : 260 - 265
  • [23] Throughput Maximization of Cognitive Radio Under the Optimization of Sensing Duration
    Gaurav Verma
    O. P. Sahu
    Wireless Personal Communications, 2017, 97 : 1251 - 1266
  • [24] Joint Beamforming and Power Allocation for Throughput Maximization in Cognitive Radio
    Yang, Yang
    Wang, Jinlong
    Wu, Qihui
    FREQUENZ, 2010, 64 (5-6) : 97 - 103
  • [25] Optimal Secondary User Packet Size in Mobile Cognitive Radio Networks under Fading Channels
    Song, Yi
    2015 IEEE CONFERENCE ON COMPUTER COMMUNICATIONS (INFOCOM), 2015,
  • [26] Opportunistic User Scheduling for Rate Maximization in Cognitive Radio Networks
    Tzelatis, Ioannis
    Berberidis, Kostas
    2013 18TH INTERNATIONAL CONFERENCE ON DIGITAL SIGNAL PROCESSING (DSP), 2013,
  • [27] Adaptive Transmission Strategies To Maximize Packet Throughput Of Cognitive Radio Under Primary User Queue Stability Constraint
    Kulkarni, Kedar
    Banerjee, Adrish
    2014 INTERNATIONAL CONFERENCE ON SIGNAL PROCESSING AND COMMUNICATIONS (SPCOM), 2014,
  • [28] Cognitive User Selection Based on Throughput Estimation in Cognitive Radio Networks
    Khan, Muhammad Sajjad
    Khan, Liaqat
    Kim, Junsu
    Lee, Eung Hyuk
    Kim, Su Min
    11TH INTERNATIONAL CONFERENCE ON ICT CONVERGENCE: DATA, NETWORK, AND AI IN THE AGE OF UNTACT (ICTC 2020), 2020, : 154 - 156
  • [29] Throughput, Delay, and Packet Capture Effects in Rayleigh Fading of A Cognitive Radio Packet Network
    Choe, Sangho
    2008 1ST IFIP WIRELESS DAYS (WD), 2008, : 385 - 389
  • [30] Throughput Maximization for Underlay Cognitive Radio Networks with RF Energy Harvesting
    Xiao, He
    Jiang, Hong
    He, Xiao-li
    14TH INTERNATIONAL CONFERENCE ON WIRELESS COMMUNICATIONS, NETWORKING AND MOBILE COMPUTING (WICOM 2018), 2018, 306 : 277 - 284