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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Investigation of High-Accuracy Indoor 3-D Positioning Using UWB Technology
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Investigation of High-Accuracy Indoor 3-D Positioning Using UWB Technology

机译:使用UWB技术的高精度室内3-D定位研究

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There are many challenges in building an ultra-wideband (UWB) indoor local positioning system for high-accuracy applications. These challenges include reduced accuracy due to multipath interference, sampling rate limitations, tag synchronization, and antenna phase-center variation. Each of these factors must be addressed to achieve millimeter or sub-millimeter accuracy. The developed system architecture is presented where a 300-ps Gaussian pulse modulates an 8-GHz carrier signal and is transmitted through an omni-directional UWB antenna. Receiver-side peak detection, a low-cost subsequential-sampling mixer utilizing a direct digital synthesizer, high fidelity 10-MHz crystals, and Vivaldi phase-center calibration are utilized to mitigate these challenging problems. Synchronized and unsynchronized experimental results validated with a sub-millimeter accurate optical tracking system are presented with a detailed discussion of various system errors.
机译:为高精度应用构建超宽带(UWB)室内本地定位系统面临许多挑战。这些挑战包括由于多径干扰,采样率限制,标签同步和天线相位中心变化导致的精度降低。必须解决所有这些因素,以达到毫米或亚毫米精度。展示了开发的系统架构,其中300 ps高斯脉冲调制8 GHz载波信号,并通过全向UWB天线发送。接收机端峰值检测,利用直接数字合成器的低成本后续采样混频器,高保真10MHz晶体以及Vivaldi相中心校准可缓解这些难题。介绍了使用亚毫米级精确光学跟踪系统验证的同步和非同步实验结果,并详细讨论了各种系统错误。

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