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Error-Rate Analysis for Bit-Loaded Coded MIMO-OFDM

机译:比特编码MIMO-OFDM的误码率分析

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摘要

Bit-loaded orthogonal frequency-division multiplexing (OFDM) with convolutional coding is a powerful technique for transmission over quasi-static frequency-selective fading channels. Further enhancements in data rate are achieved by combining loaded OFDM with multiple-input–multiple-output (MIMO) transmission. Motivated by the lack of appropriate error-rate analysis techniques for this popular type of transmission system, in this paper, we develop a novel analytical method for bit-error-rate (BER) and frame-error-rate (FER) estimation of bit-loaded coded OFDM and MIMO-OFDM systems using singular value decomposition (SVD), operating over frequency-selective quasi-static channels with nonideal interleaving. Then, we introduce three different applications of the proposed analysis. First, we compare the performance of several OFDM bit-loading schemes and propose a hybrid loading scheme that selects the best loading for each channel realization from a number of candidates. Second, we introduce three adaptive interleaving schemes: 1) selecting the best interleaver from a number of predefined interleavers; 2) a novel adaptive bit-interleaving algorithm based on the pairwise error probability; and 3) a spatial interleaving scheme for MIMO-OFDM-SVD systems with separate information sources. Third, we introduce an adaptive coded-modulation algorithm by using our BER and FER estimation techniques.
机译:卷积编码的位加载正交频分复用(OFDM)是一种在准静态频率选择衰落信道上传输的强大技术。通过将加载的OFDM与多输入多输出(MIMO)传输相结合,可以进一步提高数据速率。由于缺乏针对这种流行类型的传输系统的适当的误码率分析技术,在本文中,我们开发了一种用于比特误码率(BER)和帧误码率(FER)估计的新颖分析方法使用奇异值分解(SVD)的负载编码OFDM和MIMO-OFDM系统,在具有非理想交织的频率选择准静态信道上运行。然后,我们介绍了拟议分析的三种不同应用。首先,我们比较几种OFDM比特加载方案的性能,并提出一种混合加载方案,该方案从许多候选中为每个信道实现选择最佳加载。其次,我们介绍了三种自适应交织方案:1)从许多预定义的交织器中选择最佳交织器; 2)一种基于成对错误概率的自适应比特交织算法; 3)用于具有独立信息源的MIMO-OFDM-SVD系统的空间交织方案。第三,我们使用BER和FER估计技术介绍了一种自适应编码调制算法。

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