Performance and Complexity Comparison of the Schemes to Increase Data Rate in MIMO-OFDM with Various Decoding Schemes

Seungbeom Lee, Jin Lee, Sin-Chong Park
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引用次数: 2

Abstract

Multiple input multiple output-orthogonal frequency division multiplexing (MIMO-OFDM) is regarded as a promising technology enabling higher data rate wireless communications in multi-path fading channels. To achieve higher data rate, MIMO-OFDM use increasing the number of antenna from 2 up to 4, higher modulation schemes, or both of these technologies. In addition, there are several decoding schemes for MIMO-OFDM system. The performance and complexity of the MIMO-OFDM receiver depend on modulation type, the number of antenna and decoding schemes. This paper analyzes the complexity and performance tradeoff between two above technologies for increasing data rate in MIMO-OFDM system with varios decoding schemes such as MMSE, list square decoding (LSD), and iterative decoding with LSD. Convolutional code (R=1/2, K=7) is used as outer channel code
MIMO-OFDM中不同解码方案提高数据速率的性能和复杂度比较
多输入多输出正交频分复用技术(MIMO-OFDM)被认为是一种很有前途的技术,可以在多径衰落信道中实现更高的数据速率无线通信。为了实现更高的数据速率,MIMO-OFDM采用将天线数量从2个增加到4个,采用更高的调制方案,或同时采用这两种技术。此外,MIMO-OFDM系统有多种解码方案。MIMO-OFDM接收机的性能和复杂度取决于调制类型、天线数量和解码方案。本文分析了MIMO-OFDM系统中采用MMSE、列表平方译码(LSD)和LSD迭代译码等多种译码方案提高数据速率的复杂性和性能权衡。使用卷积码(R=1/2, K=7)作为外部信道码
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