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Enhanced MP3 transmission over Wi-Fi and LTE networks using unequal error protection and varying frequency transforms

机译:使用不等误差保护和不同频率变换,增强了Wi-Fi和LTE网络的MP3传输

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摘要

Wi-Fi and LTE are commonly used for the transmission of high bandwidth data and multimedia over the internet. Providing a good quality of service in the transmission of such data over these wireless channels is challenging due to channel impairments such as noise and fading. This paper proposes three enhanced transmission schemes for audio over Wi-Fi and LTE. The first proposed scheme exploits the unequal importance of the bits generated by an MP3 codec to offer different levels of protection to them during transmission by mapping the important bits on prioritized QAM constellation bit positions. The second and third schemes use the statistical distribution of source symbols to map the bits of the encoded symbols to an SQAM constellation. For the second scheme, only systematic bits from the encoder are mapped onto the SQAM constellation. While for the third scheme, both the systematic and parity bits are mapped onto the SQAM constellation. A comparative analysis with different frequency transforms have been done. The simulation results show that the proposed schemes increase the system performance by 1–20 dB in segmented signal to noise ratio (SSNR). Using DWT further increases the gains up to 90 dB for 16-QAM at rate ½ as compared to FFT.
机译:Wi-Fi和LTE通常用于通过Internet传输高带宽数据和多媒体。由于诸如噪声和衰落的噪声损伤,在这些数据的传输中提供良好的服务质量在这些数据上通过这些无线通道进行挑战。本文提出了三种增强的Wi-Fi和LTE的传输方案。第一个提出的方案利用MP3编解码器生成的比特的不平等重要性通过在优先级QAM星座位位置上映射重要位,在传输期间对它们提供不同的保护级别。第二和第三方案使用源符号的统计分布将编码符号的比特映射到SQAM星座。对于第二种方案,仅从编码器的系统位映射到SQAM星座上。虽然对于第三种方案,但系统和奇偶校验位都被映射到SQAM星座上。已经完成了不同频率变换的比较分析。仿真结果表明,该方案在分段信号中将系统性能提高1-20 dB,以噪声比(SSNR)。与FFT相比,使用DWT进一步将最高90 dB的增益增加了16-QAM。

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