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Channel-based antenna synthesis for improved in-vehicle UWB MB-OFDM communications

机译:用于改进的车载UWB MB-OFDM通信的基于信道的天线合成

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摘要

Ultra-wide band (UWB) is an attractive technology for innovative in-vehicle wireless communications requiring high data rates and multiband orthogonal frequency division multiplexing (MB-OFDM) a suitable scheme for the accomplishment due to its high performance, low-power and low-cost characteristics. To contribute toward improved UWB MB-OFDM communications inside vehicles, a channel-based antenna synthesis technique to customise in-vehicle UWB antennas that reduce 'blind spots' in the communication channel is proposed and presented. For the realisation, a comprehensive analysis was utilised and comprised an in-car channel evaluation including bit-error-rate (BER) estimations and radiation pattern-and-source syntheses. The channel was measured using a standard antenna to set up the base of the experiments and the distribution of the impulse responses and signal-to-noise ratios in the vehicle's passenger plane shown. The currently available IEEE 802.15.3a channel models were perceived unrealistic for the in-vehicle application and the reason for measuring the channel practically. Using these specific channel measurements, the synthesised pattern is unveiled and consequently the channel-based antenna synthesis technique used to predict the antenna source. The antenna with optimised pattern-and-source showed an improved BER performance compared with the standard antenna in this application; that is, a figure of merit of 37.73% minimised 'blind spots'.
机译:超宽带(UWB)是一项创新的车载无线通信技术,该技术需要高数据速率和多频带正交频分多路复用(MB-OFDM),是一项有吸引力的技术,该技术具有高性能,低功耗和低功耗的特点,是实现这一目标的合适方案成本特征。为了对改善车辆内部的UWB MB-OFDM通信做出贡献,提出并提出了一种基于信道的天线合成技术,以定制可减少通信信道中“盲点”的车载UWB天线。为了实现这一目标,我们进行了全面的分析,其中包括车内通道评估,其中包括误码率(BER)估计以及辐射图和源综合。使用标准天线测量通道,以设置实验基础以及所示车辆乘客平面上的脉冲响应和信噪比分布。对于车载应用以及实际测量信道的原因,人们认为当前可用的IEEE 802.15.3a信道模型是不现实的。使用这些特定的信道测量值,将显示合成的方向图,从而显示用于预测天线源的基于信道的天线合成技术。与该应用中的标准天线相比,具有优化的模式和源的天线表现出了更高的BER性能。也就是说,将“盲点”最小化的优点为37.73%。

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