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Channel-Aware Priority Transmission Scheme Using Joint Channel Estimation and Data Loading for OFDM Systems

机译:使用联合信道估计和数据加载的OFDM系统信道感知优先传输方案

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This paper presents a data-loading technique that jointly considers the effect of channel estimation and the property of encoded multimedia data in Orthogonal Frequency Division Multiplexing (OFDM) systems. We observe that OFDM subchannels experience different average bit error rate (BER) due to channel estimation inaccuracy. The leakage effect in the fast Fourier transform (FFT)-based channel estimation method or the model mismatch in the polynomial-based channel estimation method results in a variation on the decoded BER across different OFDM subchannels. Thus, we are motivated to design the Priority Transmission (PT) scheme, which utilizes this BER variation across different OFDM subchannels and provides unequal error protection (UEP) for multimedia transmission. In addition, since OFDM has been adopted in many multimedia transmission standards, we compare the different channel estimation techniques, which were compared only for generic data transmission before, in the context of multimedia transmission with the PT scheme. In particular, we extend the polynomial-based channel estimation that was previously designed for a decision-directed scenario to a pilot-symbol-assisted (PSA) channel estimation scenario. Then, we investigate the channel estimation mean square error (MSE) and BER performance of individual OFDM subchannels for both the FFT-based and the polynomial-based channel estimation. Furthermore, we design the PT scheme that achieves significant gain in peak-signal-to-noise ratio (PSNR) of the reconstructed images for both channel estimation methods. Finally, we compare different OFDM channel estimation techniques for multimedia transmission. It is shown that for generic data transmission, the polynomial-based PSA channel estimation outperforms the FFT-based method in realistic channel conditions, and both types of channel estimation have similar performance when using the proposed PT scheme for multimedia transmission.
机译:本文提出了一种数据加载技术,该技术共同考虑了正交频分复用(OFDM)系统中的信道估计效果和编码的多媒体数据的属性。我们观察到,由于信道估计的不准确性,OFDM子信道会经历不同的平均误码率(BER)。基于快速傅里叶变换(FFT)的信道估计方法中的泄漏效应或基于多项式的信道估计方法中的模型不匹配导致解码后的BER在不同OFDM子信道之间发生变化。因此,我们有动力设计优先传输(PT)方案,该方案利用跨不同OFDM子信道的BER变化,并为多媒体传输提供不均等的错误保护(UEP)。另外,由于OFDM已在许多多媒体传输标准中采用,因此我们比较了不同的信道估计技术,这些技术仅在使用PT方案进行多媒体传输的情况下才被用于常规数据传输。尤其是,我们将先前为决策导向方案设计的基于多项式的通道估计扩展到导频符号辅助(PSA)通道估计方案。然后,我们针对基于FFT和基于多项式的信道估计研究了各个OFDM子信道的信道估计均方误差(MSE)和BER性能。此外,对于两种通道估计方法,我们设计的PT方案都能在重构图像的峰值信噪比(PSNR)中获得显着的增益。最后,我们比较了用于多媒体传输的不同OFDM信道估计技术。结果表明,对于通用数据传输,在实际信道条件下,基于多项式的PSA信道估计要优于基于FFT的方法,并且在将建议的PT方案用于多媒体传输时,两种类型的信道估计都具有相似的性能。

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