Adaptive group loading for MIMO OFDM systems

Robin Shrestha, J. Kim
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引用次数: 1

Abstract

Adaptive Bit Loading (ABL) in Multiple-Input Multiple-Output Orthogonal Frequency-Division Multiplexing (MIMO-OFDM) is most likely used for achieving the desired Bit Error Rate (BER) performance in wireless systems. In this paper, we discuss some of the bit loading algorithms, compare them with respect to their BER performance, and present an effective concise Adaptive Grouped Loading (AGL) algorithm. In particular, we consider the bit loading in near optimal Singular Value Decomposition (SVD) based MIMO-OFDM system. While using SVD based system, the system requires the perfect Channel State Information (CSI) of channel transfer function at the transmitter. This scenario of SVD can be taken as an ideal case for the comparison of loading algorithms and to show the actual enhancement achievable by our AGL algorithm. Irrespective of the CSI requirement imposed by the mode of the system itself, ABL demands high level of feedback requirement. Grouped Loading (GL) would reduce the feedback requirement depending upon the group size. However, this also leads to considerable degradation in BER performance. In our AGL algorithm, a group is formed with a number of consecutive sub-channels belonging to same transmit antenna, with individual gains falling under predefined criteria. Simulation results show that the proposed AGL requires much lesser CSI compared to GL for same BER performance margin.
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MIMO OFDM系统的自适应群加载
在无线系统中,多输入多输出正交频分复用(MIMO-OFDM)中的自适应比特加载(ABL)最有可能用于实现理想的误码率(BER)性能。在本文中,我们讨论了一些位加载算法,比较了它们的误码率性能,并提出了一种有效的简洁的自适应分组加载(AGL)算法。我们特别考虑了基于近最优奇异值分解(SVD)的MIMO-OFDM系统中的位加载问题。在使用基于奇异值分解的系统时,系统要求发射机有完美的信道传递函数的信道状态信息(CSI)。这种SVD场景可以作为比较加载算法的理想案例,并展示我们的AGL算法可以实现的实际增强。不考虑系统本身模式对CSI的要求,ABL对反馈的要求很高。分组加载(GL)将根据组的大小减少反馈需求。然而,这也会导致误码率性能的显著下降。在我们的AGL算法中,由属于同一发射天线的多个连续子信道组成一组,每个子信道的增益都在预定义的标准下。仿真结果表明,在相同的误码率性能裕度下,所提出的AGL所需的CSI比GL要小得多。
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