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Implementation of a MIMO OFDM-Based Wireless LAN System

机译:基于MIMO OFDM的无线局域网系统的实现

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The combination of multiple-input multiple-output (MIMO) signal processing with orthogonal frequency division multiplexing (OFDM) is regarded as a promising solution for enhancing the data rates of next-generation wireless communication systems operating in frequency-selective fading environments. To realize this extension of OFDM with MIMO, a number of changes are required in the baseband signal processing. An overview is given of the necessary changes, including time and frequency synchronization, channel estimation, synchronization tracking, and MIMO detection. As a test case, the OFDM-based wireless local area network (WLAN) standard IEEE 802.11a is considered, but the results are applicable more generally. The complete MIMO OFDM processing is implemented in a system with three transmit and three receive antennas, and its performance is evaluated with both simulations and experimental test results. Results from measurements with this MIMO OFDM system in a typical office environment show, on average, a doubling of the system throughput, compared with a single antenna OFDM system. An average expected tripling of the throughput was most likely not achieved due to coupling between the transmitter and receiver branches.
机译:多输入多输出(MIMO)信号处理与正交频分多路复用(OFDM)的组合被认为是用于增强在选频衰落环境中运行的下一代无线通信系统的数据速率的有前途的解决方案。为了实现具有MIMO的OFDM扩展,在基带信号处理中需要进行许多更改。概述了必要的更改,包括时间和频率同步,信道估计,同步跟踪和MIMO检测。作为一个测试案例,考虑了基于OFDM的无线局域网(WLAN)标准IEEE 802.11a,但结果更普遍地适用。在具有三个发射天线和三个接收天线的系统中实现完整的MIMO OFDM处理,并通过仿真和实验测试结果来评估其性能。与单天线OFDM系统相比,在典型的办公环境中使用此MIMO OFDM系统进行的测量结果平均显示出系统吞吐量的翻倍。由于发射机和接收机分支之间的耦合,最有可能无法实现吞吐量的平均预期三倍。

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