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首页> 外文期刊>IEICE Transactions on Communications >Performance Evaluation of MIMO-UWB Systems Using Measured Propagation Data and Proposal of Timing Control Scheme in LOS Environments
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Performance Evaluation of MIMO-UWB Systems Using Measured Propagation Data and Proposal of Timing Control Scheme in LOS Environments

机译:LOS环境下利用实测传播数据和定时控制方案对MIMO-UWB系统的性能评估

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摘要

Ultrawide-band impulse radio (UWB-IR) technology and multiple-input multiple-output (MIMO) systems have attracted interest regarding their use in next-generation high-speed radio communication. We have studied the use of MIMO ultrawide-band (MIMO-UWB) systems to enable higher-speed radio communication. We used frequency-domain equalization based on the minimum mean square error criterion (MMSE-FDE) to reduce intersymicol interference (ISI) and co-channel interference (CCI) in MIMO-UWB systems. Because UWB systems are expected to be used for short-range wireless communication, MIMO-UWB systems will usually operate in line-of-sight (LOS) environments and direct waves will be received at the receiver side. Direct waves have high power and cause high correlations between antennas in such environments. Thus, it is thought that direct waves will adversely affect the performance of spatial filtering and equalization techniques used to enhance signal detection. To examine the feasibility of MIMO-UWB systems, we conducted MIMO-UWB system propagation measurements in LOS environments. From the measurements, we found that the arrival time of direct waves from different transmitting antennas depends on the MIMO configuration. Because we can obtain high power from the direct waves, direct wave reception is critical for maximizing transmission performance. In this paper, we present our measurement results, and propose a way to improve performance using a method of transmit (Tx) and receive (Rx) timing control. We evaluate the bit error rate (BER) performance for this form of timing control using measured channel data.
机译:超宽带脉冲无线电(UWB-IR)技术和多输入多输出(MIMO)系统已经吸引了人们对其在下一代高速无线电通信中的使用的兴趣。我们已经研究了使用MIMO超宽带(MIMO-UWB)系统来实现更高速度的无线电通信。我们使用基于最小均方误差准则(MMSE-FDE)的频域均衡来减少MIMO-UWB系统中的系统间干扰(ISI)和同信道干扰(CCI)。由于希望将UWB系统用于短距离无线通信,因此MIMO-UWB系统通常将在视线(LOS)环境中运行,并且直接波将在接收方接收。在这样的环境中,直接波具有高功率并导致天线之间的高度相关性。因此,认为直接波将不利地影响用于增强信号检测的空间滤波和均衡技术的性能。为了检查MIMO-UWB系统的可行性,我们在LOS环境中进行了MIMO-UWB系统的传播测量。通过测量,我们发现来自不同发射天线的直接波的到达时间取决于MIMO配置。因为我们可以从直接波中获得高功率,所以直接波接收对于最大化传输性能至关重要。在本文中,我们介绍了测量结果,并提出了一种使用发送(Tx)和接收(Rx)时序控制方法来提高性能的方法。我们使用测量的通道数据评估这种形式的时序控制的误码率(BER)性能。

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