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Field Expelriments on Real-Time 1-Gbps High-Speed Packet Transmission in MIMO-OFDM Broadband Packet Radio Access

机译:MIMO-OFDM宽带分组无线接入中实时1 Gbps高速分组传输的现场实验

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This paper presents field experimental results on real-time 1-Gbps packet transmission using antenna-dependent adaptive modulation and channel coding (AMC) with 4-by-4 MIMO multiplexing using Maximum Likelihood Detection employing QR decomposition and the M-algorithm (QRM-MLD) with adaptive selection of the surviving symbol replica candidates (ASESS) in the downlink Orthogonal Frequency Division Multiplexing (OFDM) radio access. The field experiments, which are conducted at the average moving speed of 30 km/h, show that the real-time packet transmission of greater than 1 Gbps in a 100-MHz channel bandwidth (i.e., 10 bits/second/Hz) is achieved at the average received signal-to-interference plus background noise power ratio (SINR) of approximately 13.5 dB using 16QAM modulation and Turbo coding with the coding rate of 8/9. The results also show that the antenna-dependent AMC is very beneficial to improve the measured throughput in a real propagation channel environments, where the average received power associated with each transmitted signal varies with the difference of greater than approximately 6 dB. Finally, we show that the measured throughput of greater than 1 Gbps is achieved employing antenna-dependent AMC at the probability of approximately 98% in a measurement course, where the maximum distance from the cell site was approximately 300 m with the respective transmitter and receiver antenna spacings of 1.5 m and 40 cm with the total transmission power of 10W.
机译:本文介绍了使用天线相关的自适应调制和信道编码(AMC),采用QR分解和M算法(QRM-)的最大似然检测进行4 x 4 MIMO复用的实时1 Gbps数据包传输的现场实验结果。 MLD),并在下行链路正交频分复用(OFDM)无线访问中自适应选择尚存的符号副本候选(ASESS)。以30 km / h的平均移动速度进行的现场实验表明,在100 MHz的信道带宽(即10位/秒/ Hz)中实现了大于1 Gbps的实时数据包传输使用16QAM调制和Turbo编码速率为8/9的平均接收信号干扰与背景噪声功率比(SINR)约为13.5 dB。结果还表明,与天线相关的AMC在改善实际传播信道环境中的测量吞吐量方面非常有益,在实际传播信道环境中,与每个发射信号相关的平均接收功率变化的差异大约大于6 dB。最后,我们表明,使用天线相关的AMC,在测量过程中以大约98%的概率实现了大于1 Gbps的测量吞吐量,其中,分别与发射器和接收器相距小区位置的最大距离约为300 m天线间距为1.5 m和40 cm,总发射功率为10W。

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