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MIMO identical eigenmode transmission system (IETS) — A channel decomposition perspective

机译:MIMO相同特征模式传输系统(IETS)—信道分解的角度

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In the past few years considerable attention has been given to the design of multiple-input multiple-output (MIMO) eigenmode transmission systems (EMTS). This paper presents an in-depth analysis of a new MIMO eigenmode transmission strategy. The non-linear decomposition technique called geometric mean decomposition (GMD) is employed for the formation of eigenmodes over MIMO flat-fading channel. Exploiting GMD technique, identical, parallel and independent transmission pipes are created for data transmission at higher rate. The systems based on such decomposition technique are referred to as MIMO identical eigenmode transmission system (IETS). The comparative analysis of the MIMO transceiver design exploiting non-linear and linear decomposition techniques for variable constellation is presented in this paper. The new transmission strategy is tested in combination with the Vertical Bell Labs Layered Space Time (V-BLAST) decoding scheme using different number of antennas on both sides of the communication link. The analysis is supported by various simulation results.
机译:在过去的几年中,对多输入多输出(MIMO)本征模式传输系统(EMTS)的设计给予了相当大的关注。本文对新型MIMO本征模式传输策略进行了深入分析。称为几何均值分解(GMD)的非线性分解技术用于在MIMO平坦衰落信道上形成本征模。利用GMD技术,可以创建相同,并行和独立的传输管道,以实现更高速率的数据传输。基于这种分解技术的系统称为MIMO同质模式传输系统(IETS)。本文对采用非线性和线性分解技术的可变星座MIMO收发器设计进行了比较分析。新的传输策略已与垂直贝尔实验室分层时空(V-BLAST)解码方案结合使用,在通信链路的两侧使用不同数量的天线进行了测试。各种模拟结果都支持该分析。

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