Increasing the Coverage Area through Relay Node Deployment in Long Term Evolution Advanced Cellular Networks

被引:0
|
作者
Aldhaibani, Jaafar A. [1 ]
Ahmad, R. B. [1 ]
Yahya, A. [1 ]
Azeez, Suzan A. [2 ]
机构
[1] Univ Malaysia Perlis, Sch Comp & Commun Engn, Arau 02600, Perlis, Malaysia
[2] Minist Educ, Baghdad, Iraq
来源
INTERNATIONAL CONFERENCE ON MATHEMATICS, ENGINEERING AND INDUSTRIAL APPLICATIONS 2014 (ICOMEIA 2014) | 2015年 / 1660卷
关键词
Coverage; LTE-A; relay node; relay placement;
D O I
10.1063/1.4915777
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
Wireless multi-hop relay networks have become very important technologies in mobile communications. These networks ensure high throughput and coverage extension with a low cost. The poor capacity at cell edges is not enough to meet with growing demand of high capacity and throughput irrespective of user's placement in the cellular network. In this paper we propose optimal placement of relay node that provides maximum achievable rate at users and enhances the throughput and coverage at cell edge region. The proposed scheme is based on the outage probability at users and taken on account the interference between nodes. Numerical analyses along with simulation results indicated there are an improvement in capacity for users at the cell edge is 40% increment from all cell capacity.
引用
收藏
页数:7
相关论文
共 35 条
  • [21] Simulation and Performance Analysis of Physical Downlink Shared Channel in Long Term Evolution (LTE) Cellular Networks
    Mukherjee, Triparna
    Biswas, Sourodeep
    2014 Annual IEEE India Conference (INDICON), 2014,
  • [22] Effects of bidirectional resource allocation schemes for advanced long-term evolution system in heterogeneous networks
    Gatti, Ravi
    Shankar, Shiva
    Murthy, Keshava
    INTERNATIONAL JOURNAL OF COMMUNICATION NETWORKS AND DISTRIBUTED SYSTEMS, 2021, 27 (03) : 241 - 258
  • [23] Region splitting-based resource partitioning to enhance throughput in long term evolution - Advanced networks
    Ezhilarasi, S.
    Bhuvaneswari, P. T. V.
    COMPUTERS & ELECTRICAL ENGINEERING, 2018, 71 : 294 - 308
  • [24] Comparison of multicast/broadcast services in Long Term Evolution Advanced and IEEE 802.16m networks
    Calabuig, Jorge
    Monserrat, Jose F.
    Martin-Sacristan, David
    Olmos, Joan
    WIRELESS COMMUNICATIONS & MOBILE COMPUTING, 2014, 14 (07): : 717 - 728
  • [25] Distributed two-hop proportional fair resource allocation in Long Term Evolution Advanced networks
    Sun, Chen
    Wang, Weidong
    Zhang, Yinghai
    Wang, Xiaojun
    WIRELESS COMMUNICATIONS & MOBILE COMPUTING, 2016, 16 (03): : 264 - 278
  • [26] Soft Frequency Reuse Based Interference Minimization Technique for Long Term Evolution-Advanced Heterogeneous Networks
    Malini, B.
    Babu, Vinoth K.
    2017 INTERNATIONAL CONFERENCE ON COMMUNICATION AND SIGNAL PROCESSING (ICCSP), 2017, : 630 - 634
  • [27] Long-term cargo tracking reveals intricate trafficking through active cytoskeletal networks in the crowded cellular environment
    Jin-Sung Park
    Il-Buem Lee
    Hyeon-Min Moon
    Seok-Cheol Hong
    Minhaeng Cho
    Nature Communications, 14
  • [28] Long-term cargo tracking reveals intricate trafficking through active cytoskeletal networks in the crowded cellular environment
    Park, Jin-Sung
    Lee, Il-Buem
    Moon, Hyeon-Min
    Hong, Seok-Cheol
    Cho, Minhaeng
    NATURE COMMUNICATIONS, 2023, 14 (01)
  • [29] Green wireless network optimisation strategies within smart grid environments for Long Term Evolution (LTE) cellular networks in Malaysia
    Alsharif, Mohammed H.
    Nordin, Rosdiadee
    Ismail, Mahamod
    RENEWABLE ENERGY, 2016, 85 : 157 - 170
  • [30] Radio Resource Management for Green 3GPP Long Term Evolution Cellular Networks: Review and Trade-offs
    Salman, Mustafa Ismael
    Abdulhasan, Muntadher Qasim
    Ng, Chee Kyun
    Noordin, Nor Kamariah
    Sali, Aduwati
    Ali, Borhanuddin Mohd
    IETE TECHNICAL REVIEW, 2013, 30 (03) : 257 - 269