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Cross-layer resource allocation based on equivalent bandwidth in OFDMA systems
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作者 Su Pan Cheng Li +1 位作者 Sheng Zhang Danwei Chen 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2016年第4期754-762,共9页
A quality of service(QoS) guaranteed cross-layer resource allocation algorithm with physical layer, medium access control(MAC) layer and call admission control(CAC) considered simultaneously is proposed for the ... A quality of service(QoS) guaranteed cross-layer resource allocation algorithm with physical layer, medium access control(MAC) layer and call admission control(CAC) considered simultaneously is proposed for the full IP orthogonal frequency division multiple access(OFDMA) communication system, which can ensure the quality of multimedia services in full IP networks.The algorithm converts the physical layer resources such as subcarriers, transmission power, and the QoS metrics into equivalent bandwidth which can be distributed by the base station in all three layers. By this means, the QoS requirements in terms of bit error rate(BER), transmission delay and dropping probability can be guaranteed by the cross-layer optimal equivalent bandwidth allocation. The numerical results show that the proposed algorithm has higher spectrum efficiency compared to the existing systems. 展开更多
关键词 resource allocation equivalent bandwidth crosslayer optimization orthogonal frequency division multiple access(OFDMA)
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Research on Interference Cancellation for Switched-on Small Cells in Ultra Dense Network 被引量:1
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作者 SUN Yang CHANG Yongyu +3 位作者 WANG Chao ZHANG Lu ZHANG Yu WANG Xinhui 《ZTE Communications》 2016年第B12期48-53,共6页
In ultra-dense heterogeneous networks, the co-channel inter- ference between small cells turns to be the major challenge to cell throughput improvement, especially for cell edge users. In this paper, we propose a dist... In ultra-dense heterogeneous networks, the co-channel inter- ference between small cells turns to be the major challenge to cell throughput improvement, especially for cell edge users. In this paper, we propose a distributed frequency resource al- location approach for interference cancellation, which allo- cates appropriate frequency resources when a small cell is switched on to reduce the co-channel interference to its neigh- boring small cells. This frequency resource pre-allocation aims at avoiding co-channel interference between small ceils and improving users ' throughput. The simulation results show that our proposed scheme can effectively reduce the co-chan- nel interference and achieve considerable gains in users' through put. 展开更多
关键词 ultra-dense network interference cancellation frequency resource allocation cell switch
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