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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Field Experiments on MIMO Multiplexing with Peak Frequency Efficiency of 50 Bit/Second/Hz Using MLD Based Signal Detection for OFDM High-Speed Packet Access
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Field Experiments on MIMO Multiplexing with Peak Frequency Efficiency of 50 Bit/Second/Hz Using MLD Based Signal Detection for OFDM High-Speed Packet Access

机译:基于MLD的OFDM高速分组接入信号检测的MIMO复用(峰值效率为50位/秒/ Hz)的现场实验

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This paper presents indoor and field experimental results on extremely high-speed packet transmissions of 4.92 Gbps in a 100 -MHz channel bandwidth, i.e., the frequency efficiency of approximately 50 bit/second/Hz, in the downlink OFDM radio access. The required received signal-to-noise power ratio (SNR) is less than 30dB, which is almost the upper limit in cellular environments near a cell site even with a light channel load, with the aim of application to future universal broadband packet radio access. We apply 12-by-12 MIMO multiplexing using the maximum likelihood detection employing QR decomposition and the M-algorithm (QRM-MLD) with adaptive selection of the surviving symbol replica candidates (ASESS),64QAM data modulation, and Turbo coding with the coding rate of R = 8/9 to achieve an extremely high frequency efficiency level. In the field experiments conducted in the Yokosuka Research Park (YRP) district of Yokosuka city, we show that the measured throughput of 4.92 Gbps is achieved at the average received SNR per receiver antenna of approximately 28.0 and 28.5 dB when the respective receiver antenna separation is 40 cm (6.2lambda) and 10 cm (1.5lambda) and the transmitter antenna separation is 70 cm (10.9lambda) at the average speed of 10 km/h under non-line-of-sight (NLOS) conditions.
机译:本文介绍了室内和现场实验结果,说明在100 MHz的信道带宽(即约50位/秒/ Hz的频率效率)中,下行链路OFDM无线电接入中有4.92 Gbps的超高速数据包传输。所需的接收信噪功率比(SNR)小于30dB,这几乎是即使有光信道负载,在靠近蜂窝基站的蜂窝环境中的上限,目的是应用于未来的通用宽带分组无线接入。我们使用QR分解和M算法(QRM-MLD)的最大似然检测以及残存的符号副本候选者(ASESS)的自适应选择,64QAM数据调制以及Turbo编码与编码来应用12 x 12 MIMO复用R = 8/9的最大频率,以达到极高的频率效率水平。在横须贺市横须贺研究园区(YRP)区进行的现场实验中,我们表明,当各个接收器天线间距为28.0 dB时,每个接收器天线的平均接收SNR约为28.0 dB和28.5 dB时,可实现4.92 Gbps的测量吞吐量。在非视距(NLOS)条件下,平均速度为10 km / h时,发射机天线间隔为40 cm(6.2lambda)和10 cm(1.5lambda),并且发射机天线间隔为70 cm(10.9lambda)。

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