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Performance improvement for real-time video communications by link adaptation in E-GPRS networks

机译:通过E-GPRS网络中的链路自适应提高实时视频通信的性能

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The provision of video communications over wireless links is a challenging task due to the poor performance of video compression algorithms in time-varying error-prone environments. The paper presents a performance enhancement method for real-time video communications by employing link adaptation in enhanced general packet radio service (E-GPRS) cellular networks. A novel link adaptation algorithm, which is based on physical layer measurable quantities, including block error rate (BLER), received signal strength (RSS) and the gradient of RSS, is proposed and analysed. The effects of a link adaptation scheme at video frame level on improving video quality with variable source rate by varying the channel-coding scheme for a fixed channel allocation is studied. The algorithm is tested for MPEG-4 coded video transmissions over simulated channel conditions based on the GSM mobile radio multipath propagation models (see 3GPP TS 05.05, 1999). The performance obtained using the proposed method is compared to a non-adaptive case and to the ideal adaptive case, where the choice of channel coding scheme is made based on the carrier-to-interference ratio (CIR) of the transmission channel.
机译:通过无线链接提供视频通信是一项具有挑战性的任务,因为在时变易错的环境中视频压缩算法的性能较差。本文提出了一种通过在增强型通用分组无线服务(E-GPRS)蜂窝网络中采用链路自适应来提高实时视频通信性能的方法。提出并分析了一种基于物理层可测量量的链路自适应算法,包括块误码率(BLER),接收信号强度(RSS)和RSS斜率。研究了在视频帧级别的链路自适应方案,通过改变固定信道分配的信道编码方案,以可变的源速率提高视频质量的效果。基于GSM移动无线多径传播模型(参见3GPP TS 05.05,1999),针对模拟信道条件下的MPEG-4编码视频传输测试了该算法。将使用所提出的方法获得的性能与非自适应情况和理想自适应情况进行比较,在理想情况下,基于传输信道的载波干扰比(CIR)来选择信道编码方案。

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