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A joint source coding-power control approach for video transmission over CDMA networks

机译:CDMA网络上视频传输的联合源编码功率控制方法

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We consider future generation wireless code-division multiple-access (CDMA) cellular networks supporting heterogeneous compressed video traffic and investigate transport schemes for maximizing the number of users that can be supported in a single cell while simultaneously maximizing the reconstructed video quality of individual users. More specifically, we demonstrate that the network resources consumed by an individual user in a spread-spectrum CDMA network can be taken as the product of the allocated source-coding rate R/sub s/ and the energy per bit normalized to the multiple-access interference noise density /spl gamma//sub b/. We propose a joint source coding and power control (JSCPC) approach for allocating these two quantities to an individual user, subject to a constraint on the total available bandwidth, to simultaneously maximize the per-cell capacity while maximizing the quality of the delivered video to individual users. We demonstrate the efficacy of this approach using the ITU-T H.263+ video source coder, although the approach is generally applicable to other source-coding schemes as well. The results indicate a significant improvement in delivered quality-of-service (QoS), measured in terms of the end-user average peak signal-to-noise ratio, that can be achieved at a given level of network loading. Furthermore, we demonstrate that without an appropriate JSCPC strategy the traditional soft-capacity limit associated with CDMA networks is no longer present. Indeed, a precipitous decrease in performance can be expected with increasing load. We show that this behavior can be avoided with the proposed JSCPC approach, thereby significantly extending the useful capacity of the CDMA network while exhibiting a more graceful degradation pattern under increasing load.
机译:我们考虑了支持异构压缩视频流量的下一代无线码分多址(CDMA)蜂窝网络,并研究了传输方案,以最大程度地提高单个小区中可以支持的用户数量,同时又最大化单个用户的重构视频质量。更具体地说,我们证明了在扩频CDMA网络中单个用户消耗的网络资源可以看作是分配的源编码率R / sub s /和归一化为多址的每比特能量的乘积。干扰噪声密度/ spl gamma // sub b /。我们提出了一种联合源代码编码和功率控制(JSCPC)方法,将这两个数量分配给单个用户,但要受总可用带宽的限制,同时最大化每个单元的容量,同时最大程度地提高所传送视频的质量。个人用户。我们使用ITU-T H.263 +视频源编码器演示了该方法的有效性,尽管该方法通常也适用于其他源编码方案。结果表明,按照最终用户平均峰值信噪比来衡量,可以在给定的网络负载水平下实现交付的服务质量(QoS)的显着改善。此外,我们证明了没有适当的JSCPC策略,与CDMA网络相关的传统软容量限制将不再存在。实际上,随着负载的增加,性能可能会急剧下降。我们表明,通过提出的JSCPC方法可以避免这种行为,从而显着扩展了CDMA网络的有用容量,同时在增加的负载下展现出更优美的降级模式。

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