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Robust channel quality indicator reporting for multi-carrier and multi-user systems

机译:多载波和多用户系统的可靠信道质量指标报告

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This paper considers the best-M channel-quality-indicator (CQI) reporting scheme for multi-carrier and multi-user systems. The perfect knowledge of CQIs is crucial for efficient resource allocation. Using outdated (which occurs due to feedback delay) and imperfectly estimated CQIs for resource allocation can severely degrade the system performance. The conventional approach of dealing with the imperfections in CQIs at the base station (BS) is not efficient for multi-carrier systems as the BS has a small number of CQIs and therefore, does not know the distribution of the imperfections for all subcarriers. Approaching this problem more realistically, we model the CQI variations as a discrete-time linear dynamic system where the distribution of the imperfections is unknown, and propose a novel best-M scheme that accounts for feedback delay and imperfect CQI estimation at the CQI reporting level. Instead of reporting the estimated CQIs (i.e., the conventional approach), in our scheme, each user reports so-called adapted CQIs computed by using an H~∞-controller based approach. Unlike the conventional approaches, the H~∞ -controller does not require information on the probability distribution of the imperfections, and it guarantees robust performance in scenarios where the conventional approaches fail. The impact of feedback delay and imperfect CQI estimation on resource allocation is taken into account in the computation of adapted CQIs. That is adapted CQIs are computed such that if they are used for resource allocation, the deviation between the allocated rate by the BS and the actual channel rate is reduced. Results show that our scheme outperforms the schemes used in the current wireless standards.
机译:本文考虑了用于多载波和多用户系统的最佳M信道质量指标(CQI)报告方案。 CQI的完美知识对于有效的资源分配至关重要。使用过时的(由于反馈延迟而发生)和不正确地估计的CQI进行资源分配会严重降低系统性能。在基站(BS)处处理CQI中的缺陷的常规方法对于多载波系统而言是无效的,因为BS具有少量的CQI,因此不知道所有子载波的缺陷的分布。更实际地解决此问题,我们将CQI变化建模为离散时间线性动态系统,其中缺陷的分布是未知的,并提出了一种新型的Best-M方案,该方案考虑了CQI报告级别的反馈延迟和不完美的CQI估计。在我们的方案中,不是报告估计的CQI(即常规方法),而是每个用户报告通过使用基于H〜∞控制器的方法计算出的所谓的自适应CQI。与常规方法不同,H〜∞控制器不需要有关缺陷的概率分布的信息,并且可以保证常规方法失败的情况下的鲁棒性能。自适应CQI的计算中考虑了反馈延迟和CQI估计不完善对资源分配的影响。也就是说,计算出适合的CQI,使得如果将其用于资源分配,则减小了由BS分配的速率与实际信道速率之间的偏差。结果表明,我们的方案优于当前无线标准中使用的方案。

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