Video image transmission via mobile satellite channels

Xiaohong Wang, Yong Liu, S. Blostein
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引用次数: 11

Abstract

This paper deals with transmitting CCITT H.261 standard compressed moving-images (64 kbits/sec) through shadowed mobile satellite channels. Concatenated codes consisting of 8PSK trellis inner codes and Reed-Solomon (or BCH) outer codes are used to achieve large coding gains with small bandwidth expansion in the presence of frequency-nonselective slow fading. Pilot symbol-aided techniques have been found to be suitable for the transmission of digital signals over mobile satellite channels. An improved pilot symbol assisted DFALP (decision feedback adaptive linear prediction) algorithm is presented and used to estimate fading channel state information. Monte Carlo simulations show that our 40.5 kBd system yields near error free image transmission at average channel signal to noise ratio (Eb/No) between 10-13 dB over light-to-average shadowed Rician channels. The trade off between BER performance and delay due to interleaving is investigated.
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通过移动卫星信道传输视频图像
本文研究了通过带影移动卫星信道传输CCITT H.261标准压缩运动图像(64 kb /s)的问题。使用由8PSK栅格内码和里德-所罗门(或BCH)外码组成的串接码,可以在频率非选择性慢衰落的情况下实现大的编码增益和小的带宽扩展。导频符号辅助技术已被发现适用于在移动卫星信道上传输数字信号。提出了一种改进的导频符号辅助决策反馈自适应线性预测(DFALP)算法,用于估计衰落信道状态信息。蒙特卡罗模拟表明,我们的40.5 kBd系统在平均信道信噪比(Eb/No)在10-13 dB之间的平均信道上产生接近无误差的图像传输。研究了误码率性能和交错延迟之间的权衡。
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