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Performance of joint maximum-likelihood decoding for block coded signal streams in overloaded MIMO-OFDM system

机译:过载MIMO-OFDM系统中块编码信号流的关节最大似然解码的性能

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This paper presents a joint decoding scheme for block coded signals in an overloaded multiple-input multiple-output (MIMO)-OFDM system. In a normal MIMO-OFDM system, symbol detection is carried out over the signals received by multiple antenna elements and is separated from decoding. However, owing to form factor limitation, a mobile terminal may have a limited number of receive antenna elements. Instead of splitting detection and decoding, in this paper, a joint maximum likelihood (ML) decoding in an overloaded MIMO-OFDM system is investigated. Based on ideal interleaving, independence among coded symbols spread over subcarriers is assumed. Thus, the outage capacity improves even though the ergodic capacity remains the same with a single receive antenna. As an example of the proposed system, bit error rate performance of Hamming coded and spatially multiplexed signals with joint ML decoding on a Rayleigh fading channel is investigated. The error rate is evaluated through analysis and computer simulation.
机译:本文介绍了用于过载的多载多输入多输出(MIMO)-OFDM系统中的块编码信号的联合解码方案。在正常的MIMO-OFDM系统中,符号检测在由多个天线元件接收的信号上执行并且与解码分离。然而,由于形成因子限制,移动终端可以具有有限数量的接收天线元件。在本文中,研究了在本文中取代了在过载的MIMO-OFDM系统中解码的接头最大可能性(ML)解码。假设基于理想的交织,假设在子载波上传播的编码符号之间的独立性。因此,即使遍历容量与单个接收天线保持相同,中断能力也会改善。作为所提出的系统的示例,研究了利用瑞利衰落通道上的接头M1解码的汉明编码和空间复用信号的误码率性能。通过分析和计算机仿真评估错误率。

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