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Cross-Layer Optimization for Multimedia Transport over Multicode CDMA Networks

机译:通过多码CDMA网络进行多媒体传输的跨层优化

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Most previous work on code division multiple access (CDMA) considers the bit error ratio (BER) at the physical layer and the frame drop ratio (FDR) at the medium access control layer separately. However, a better system performance, e.g., in terms of a lower overall frame loss ratio (FLR), can be achieved if BER and FDR are jointly optimized. In this paper, we propose a cross-layer optimization scheme called traffic-adaptive scheme for multicode CDMA operating over a time division multiple access (TDMA) channel. Based on the traffic condition and buffer status, this scheme employs a Markov Decision Process (MDP) to determine the optimal value of the maximum number of simultaneous data frames that can be transmitted in each time slot of a TDMA frame so as to minimize the overall FLR of the system. To facilitate implementation, we also propose an approximation scheme named the rate-adaptive scheme to reduce the computation cost. Simulation and analytical results show that both the traffic-adaptive scheme and rate-adaptive scheme can significantly reduce FLR, increase the system throughput, and optimize the packet access delay of the system. Furthermore, the rate-adaptive scheme can achieve a performance close to the traffic-adaptive scheme when the traffic load in the system is high.
机译:以前有关码分多址(CDMA)的大多数工作都是分别考虑物理层的误码率(BER)和介质访问控制层的丢帧率(FDR)。但是,如果联合优化BER和FDR,则可以获得更好的系统性能,例如,较低的总帧丢失率(FLR)。在本文中,我们为跨时分多址(TDMA)信道工作的多码CDMA提出了一种称为业务量自适应方案的跨层优化方案。基于流量条件和缓冲区状态,此方案采用马尔可夫决策过程(MDP)来确定可以在TDMA帧的每个时隙中传输的同时数据帧的最大数目的最佳值,以使总体系统的FLR。为了便于实现,我们还提出了一种近似的方案,称为速率自适应方案,以降低计算成本。仿真和分析结果表明,流量自适应方案和速率自适应方案都可以显着降低FLR,增加系统吞吐量,并优化系统的分组访问延迟。此外,当系统中的业务负载高时,速率自适应方案可以实现接近于业务自适应方案的性能。

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