首页> 外文期刊>ACM transactions on sensor networks >Harmonium: Ultra Wideband Pulse Generation with Bandstitched Recovery for Fast, Accurate, and Robust Indoor Localization
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Harmonium: Ultra Wideband Pulse Generation with Bandstitched Recovery for Fast, Accurate, and Robust Indoor Localization

机译:谐波:超宽带脉冲发生器,带隙恢复功能,可实现快速,准确和鲁棒的室内定位

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We introduce Harmonium, a novel ultra wideband (UWB) RF localization architecture that achieves decimeter-scale accuracy indoors. Harmonium strikes a balance between tag simplicity and processing complexity to provide fast and accurate indoor location estimates. Harmonium uses only commodity components and consists of a small, inexpensive, lightweight, and FCC-compliant UWB transmitter or tag, fixed infrastructure anchors with known locations, and centralized processing that calculates the tag's position. Anchors employ a new frequency-stepped narrowband receiver architecture that rejects narrowband interferers and extracts high-resolution timing information without the cost or complexity of traditional UWB approaches. In a complex indoor environment, 90% of position estimates obtained with Harmonium exhibit less than 31 cm of error with an average of 9 cm of inter-sample noise. In non-line-of-sight conditions (i.e., through-wall), 90% of position error is less than 42 cm. The tag draws 75 mW when actively transmitting, or 3.9 mJ per location fix at the 19 Hz update rate. Tags weigh 3 g and cost $4.50 USD at modest volumes. Furthermore, VISI-based design concepts are identified for a simple, low-power realization of the Harmonium tag to offer a roadmap for the realization of Harmonium concepts in future integrated systems. Harmonium introduces a new design point for indoor localization and enables localization of small, fast objects such as micro quadrotors, devices previously restricted to expensive optical motion capture systems.
机译:我们介绍Harmonium,这是一种新颖的超宽带(UWB)RF本地化架构,可在室内达到分米级精度。 Harmonium在标签简单性和处理复杂性之间取得平衡,以提供快速准确的室内位置估算。 Harmonium仅使用商品组件,由小型,廉价,轻便且符合FCC的UWB发射机或标签,具有已知位置的固定基础设施锚点以及计算标签位置的集中处理程序组成。锚采用新的频率步进式窄带接收器架构,该架构可拒绝窄带干扰源并提取高分辨率定时信息,而无需传统UWB方法的成本或复杂性。在复杂的室内环境中,使用Harmonium获得的位置估计值的90%表现出小于31 cm的误差,平均采样间噪声为9 cm。在非视线条件下(即穿墙),90%的位置误差小于42 cm。主动传输时,该标签消耗75 mW,或者以19 Hz的更新速率在每个位置定位中消耗3.9 mJ。标签的重量为3克,适量的价格为4.50美元。此外,基于VISI的设计概念被确定用于Harmonium标签的简单,低功耗实现,从而为将来的集成系统中实现Harmonium概念提供了路线图。 Harmonium为室内定位引入了新的设计要点,并可以定位小型快速物体,例如微型四旋翼飞行器,这些设备以前仅限于昂贵的光学运动捕获系统。

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