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DSP implementation of a bit loading algorithm for adaptive wireless multicarrier transceivers

机译:自适应无线多载波收发器的位加载算法的DSP实现

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摘要

In this paper, we present a proof-of-concept, fixed-point, DSP hardware implementation of an adaptive bit loading algorithm that is designed for wireless multicarrier transceivers. Adaptive bit loading is used to enhance the performance of multicarrier transceivers by tailoring the subcarrier signal constellations to the channel conditions, which can vary across the subcarriers. Since most bit loading algorithms possess a high computational cost and are unable to cope with rapid variations of wireless channels, they are seldom used in present wireless standards. To prove that adaptive bit loading is feasible for wireless transceivers, our work focuses on the implementation of a known bit loading algorithm that can quickly search for the final bit allocation in an iterative manner. The goal of this algorithm is to yield the largest-possible throughput while satisfying a mean BER constraint. The performance of the hardware implementation operating in time-varying channel conditions is studied in terms of the overall throughput. Furthermore, the robustness of the hardware implementation is evaluated, relative to sudden changes in the channel that interrupts the run of the algorithm. Real-time operations and fixed-point representation issues are included in the discussion. Additionally, we propose a modified algorithm implementation that is more robust to channel variations.
机译:在本文中,我们提出了一种针对无线多载波收发器设计的自适应比特加载算法的概念验证,定点,DSP硬件实现。通过使子载波信号星座图适应信道条件,自适应位加载用于增强多载波收发器的性能,信道条件可能会在子载波之间变化。由于大多数位加载算法具有很高的计算成本,并且不能应付无线信道的快速变化,因此在当前的无线标准中很少使用它们。为了证明自适应位加载对于无线收发器是可行的,我们的工作集中在已知位加载算法的实现上,该算法可以以迭代方式快速搜索最终位分配。该算法的目标是在满足平均BER约束的同时产生最大可能的吞吐量。就总吞吐量而言,研究了在时变信道条件下运行的硬件实现的性能。此外,相对于中断算法运行的通道中的突然变化,评估了硬件实现的鲁棒性。讨论中包括实时操作和定点表示问题。此外,我们提出了一种改进的算法实现方案,该算法对通道变化更加健壮。

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