An architecture for faster than Nyquist Turbo broadcasting

Yong Jin Daniel Kim, J. Bajcsy
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引用次数: 6

Abstract

Recently [16], we have proposed using faster than Nyquist (FTN) signaling to achieve transmission over continuous-time broadcast channels and shown that it can achieve the capacity region of the two-user Gaussian broadcast channel. Benefits of FTN broadcasting include separate encoding and explicit transmission of all users' data, i.e., unlike the previously proposed broadcast coding schemes, no joint encoding is needed. This paper presents a design of a Turbo-coded broadcast transmitter based on the FTN signaling. The proposed receiver architecture has a low implementation complexity and is based on Turbo decoding and successive cancellation of FTN-induced intersymbol interference. The presented simulation results indicate that the designed FTN broadcast architecture can be superior to the time-sharing broadcasting used in practice, and shows the potential to perform close to the capacity boundaries of the Gaussian broadcast channel.
一个比奈奎斯特Turbo广播更快的架构
最近[16],我们提出使用比奈奎斯特(FTN)更快的信令来实现连续时间广播信道的传输,并表明它可以实现双用户高斯广播信道的容量区域。FTN广播的优点包括单独编码和所有用户数据的显式传输,即不需要联合编码,而不像以前提出的广播编码方案。本文介绍了一种基于FTN信令的turbo编码广播发射机的设计。所提出的接收机结构具有较低的实现复杂度,并基于Turbo解码和逐次消除ftn引起的码间干扰。仿真结果表明,所设计的FTN广播架构可以优于实际使用的分时广播,并显示出接近高斯广播信道容量边界的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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