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Expected distortion of simultaneous transmission of multiple source symbols with multicarrier frequency hopping modulation

机译:使用多载波跳频调制同时传输多个源符号的预期失真

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In this paper, we consider the problem of transmitting a Gaussian source over a slow-fading channel, when the aim is to adjust system parameters so that the source is reconstructed with minimum expected distortion. In the considered scenario, the spatial distribution of users is modelled by a homogeneous Poisson point process. These users transmit their symbols by means of multicarrier frequency hopping modulation in which the frequency diversity characteristic is implemented by dividing the available bandwidth into several subbands where each subband consists of several subchannels. The number of subbands has a significant effect on the improvement of the system's performance. We can have as many descriptions as the number of available subbands. In this way, we consider a combination of symmetric multiple description coding as the source coding and direct channel transmission coding as the channel coding so as to code the source signal into several descriptions which have the same number as the subbands. Considering separate source-channel coding strategy, we compute the expected distortion and evaluate the effects of system parameters on it. Furthermore, with the goal of minimizing the expected distortion, the optimum values of some system parameters in general and also for the case where the bandwidth expansion ratio is equal to one, are calculated. Through the optimization process, the optimum number of subbands and the optimum value of source coding rate are determined which lead to a significant improvement in the network performance.
机译:在本文中,当目标是调整系统参数以便以最小的预期失真重建信号源时,我们考虑在慢速衰减信道上传输高斯信号源的问题。在考虑的场景中,用户的空间分布是通过齐次的Poisson点过程建模的。这些用户通过多载波跳频调制来发送其符号,其中,通过将可用带宽划分为几个子带来实现频率分集特性,其中每个子带由几个子信道组成。子带的数量对系统性能的提高有重要影响。我们可以提供与可用子带数量一样多的描述。这样,我们考虑将对称多描述编码作为源编码,将直接信道传输编码作为信道编码的组合,以便将源信号编码成与子带数目相同的多个描述。考虑单独的源通道编码策略,我们计算预期的失真并评估系统参数对其的影响。此外,以使期望的失真最小化为目标,通常计算某些系统参数的最佳值,并且对于带宽扩展率等于1的情况也是如此。通过优化过程,可以确定子带的最佳数量和源编码率的最佳值,从而显着改善网络性能。

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