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Transmission parameters optimization and receiver architectures for DVB-S2X systems

机译:DVB-S2X系统的传输参数优化和接收器体系结构

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The second-generation specification of the digital video broadcasting for satellite (DVB-S2) was developed in 2003 with the aim of improving the existent broadcasting standard DVB-S. The main new features introduced by DVB-S2 included increased baud rates, higher cardinality constellations (up to 32 points), and more efficient binary codes. The extension to DVB-S2, approved in 2014 with the name DVB-S2X, together with continuous technological evolution, moves further steps in this direction, with the use of constellations with cardinality up to 256 points, improved granularity of modulation and coding schemes, and the possibility to increase the baud rate. In this scenario, it is important to be able to ascertain what is the best transceiver structure, starting from the choice of the shaping pulse and the baud rate of the transmitted signals and ending with the most promising receiver architectures, with the aim of maximizing the spectral efficiency. In this paper, we will discuss some of the aspects of this investigation, namely, the optimization of transmission parameters and the description of an efficient receiver. We will then assess the performance of the proposed scheme in comparison with a classical DVB-S2 architecture. Some synchronization aspects will also be discussed, to account for the impairments introduced by the channel.
机译:卫星数字视频广播的第二代规范(DVB-S2)于2003年制定,旨在改进现有的广播标准DVB-S。 DVB-S2引入的主要新功能包括提高的波特率,更高的基数星座图(最多32点)和更有效的二进制代码。 DVB-S2的扩展于2014年获得批准,名称为DVB-S2X,并伴随着不断的技术发展,朝着这个方向迈出了进一步的一步,使用了基数高达256点的星座,改进了调制和编码方案的粒度,以及提高波特率的可能性。在这种情况下,重要的是要确定最佳的收发器结构,从选择整形脉冲和传输信号的波特率开始,到最有希望的接收器架构结束,以最大程度地提高接收器的结构。频谱效率。在本文中,我们将讨论这项研究的一些方面,即传输参数的优化和有效接收器的描述。然后,我们将与经典的DVB-S2体系结构相比,评估所提出方案的性能。还将讨论一些同步方面,以解决信道引入的损害。

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