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首页> 外文期刊>IEEE Transactions on Aerospace and Electronic Systems >DecaWave Ultra-Wideband Warm-Up Error Correction
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DecaWave Ultra-Wideband Warm-Up Error Correction

机译:DeCawave超宽带预热纠错

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摘要

In the field of indoor localization, ultra-wideband (UWB) technology is no longer dispensable. The market demands that the UWB hardware has to be cheap, precise, and accurate. These requirements lead to the popularity of the DecaWave UWB system. The great majority of the publications about this system deal with the correction of the signal power, hardware delay, or clock drift. It has traditionally been assumed that this error only appears at the beginning of the operation and is caused by the warm-up process of the crystal. In this article, we show that the warm-up error is influenced by the same error source as the signal power. To our knowledge, no scientific publication has explicitly examined the warm-up error before. This work aims to close this gap and, moreover, to present a solution, which does not require any external measuring equipment and only has to be carried out once. It is shown that the empirically obtained warm-up correction curve increases the accuracy for the two-way ranging significantly.
机译:在室内定位领域,超宽带(UWB)技术不再可分配。市场要求UWB硬件必须廉价,精确,准确。这些要求导致二伐韦UWB系统的普及。关于该系统的大多数出版物处理信号电源,硬件延迟或时钟漂移的校正。传统上已经假设此错误仅出现在操作的开始时,并且是由晶体的预热过程引起的。在本文中,我们表明预热误差受到与信号功率相同的错误源的影响。据我们所知,没有明确检查过的科学出版物以前审查了预热错误。这项工作旨在缩短这种差距,而且提供了一种不需要任何外部测量设备的解决方案,并且只需要进行一次。结果表明,经验获得的预热校正曲线显着增加了双向测距的准确性。

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