基于超宽带测量测距系统的自主垂直起降本地定位系统

N. Tamami, B. Sumantri, P. Kristalina
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引用次数: 0

摘要

自主垂直起降(VTOL)必须有精确的定位系统支持,尤其是在小面积的自主起飞、着陆和其他任务中。本文提出了一种利用低成本精密超宽带(UWB)测距系统定位自主垂直起降降落区域的小型局部室外定位系统的新方法。我们比较了对称单边双向测距(SSS-TWR)、对称双边双向测距(SDS-TWR)和不对称双边双向测距方法(ADS-TWR),以获得UWB无线电模块上的精确测距测量。ADS-TWR在距离误差最小方面优于其他方法。ADS-TWR平均误差为1.38%(35.88 cm),SDS-TWR平均错误为1.83%(47.58 cm),SSS-TWR平均偏差为2.73%(70.98 cm)。此外,利用三边测量方法来获得自主VTOL的局部位置。三边测量方法成功地在一个小的局部室外区域(20米x 30米)实现了自主VTOL四旋翼机定位。自主垂直起降已经能够在七个区域(2米x 2米)放下七个有效载荷,并成功降落在原位(3米x 3米)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Local positioning system for autonomous vertical take-off and landing using ultra-wide band measurement ranging system
An autonomous vertical take-off and landing (VTOL) must be supported with an accurate positioning system, especially for autonomous take-off, landing, and other tasks in small area. This paper presents a novel method of small local outdoor positioning system for localizing the area of dropping and landing of autonomous VTOL by utilizing the low-cost precision ultra-wide band (UWB) ranging system. We compared symmetrical single sided-two way ranging (SSS-TWR), symmetrical double sided-two way ranging (SDS-TWR), and asymmetrical double sided-two way ranging (ADS-TWR) methods to get precision ranging measurement on UWB radio module. ADS-TWR was superior to others by resulting in minimum distance error. The ADS-TWR average error was 1.38 % (35.88 cm), SDS-TWR average error was 1.83 % (47.58 cm), and SSS-TWR average error was 2.73 % (70.98 cm). Furthermore, the trilateration method was utilized to obtain the local position of the autonomous VTOL. The trilateration method successfully implemented autonomous VTOL quadcopter positioning in a small local outdoor area (20 m x 30 m). Autonomous VTOL has been able to drop seven payloads in seven areas (2 m x 2 m) and landed in the home position (3 m x 3 m) successfully.
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CiteScore
0.70
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