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一种基于噪声容忍扩频声音的四旋翼飞行器在温室中作业的定位系统。

A Noise Tolerant Spread Spectrum Sound-Based Local Positioning System for Operating a Quadcopter in a Greenhouse.

机构信息

Graduate School of Agriculture, Kyoto University, Kyoto 6068502, Japan.

Department of Ocean Mechanical Engineering, National Fisheries University, Shimonoseki 7596595, Japan.

出版信息

Sensors (Basel). 2020 Apr 1;20(7):1981. doi: 10.3390/s20071981.

Abstract

Quadcopters are beginning to play an important role in precision agriculture. In order to localize and operate the quadcopter automatically in complex agricultural settings, such as a greenhouse, a robust positioning system is needed. In previous research, we developed a spread spectrum sound-based local positioning system (SSSLPS) with a 20 mm accuracy within a 30 × 30 m greenhouse area. In this research, a noise tolerant SSSLPS was developed and evaluated. First, the acoustic noise spectrum emitted by the quadcopter was documented, and then the noise tolerance properties of SSSounds were examined and tested. This was done in a greenhouse with a fixed quadcopter (9.75 N thrust) with the positioning system mounted on it. The recorded quadcopter noise had a broadband noise compared to the SSSound. Taking these SSSound properties into account, the noise tolerance of the SSSLPS was improved, achieving a positioning accuracy of 23.2 mm and 31.6 mm accuracy within 12 × 6 m for both Time-division Multiple Access (TDMA) and Frequency-division Multiple Access (FDMA) modulation. The results demonstrate that the SSSLPS is an accurate, robust positioning system that is noise tolerant and can used for quadcopter operation even within a small greenhouse.

摘要

四旋翼飞行器开始在精准农业中发挥重要作用。为了在复杂的农业环境(如温室)中实现四旋翼飞行器的自动定位和操作,需要一个强大的定位系统。在之前的研究中,我们开发了一种基于扩频声音的本地定位系统(SSSLPS),其在 30×30 米的温室区域内的精度达到 20 毫米。在这项研究中,我们开发并评估了一种抗噪的 SSSLPS。首先,记录了四旋翼飞行器发出的噪声频谱,然后研究并测试了 SSSounds 的抗噪特性。这是在一个温室中进行的,温室中固定有一架四旋翼飞行器(9.75N 推力),并在其上安装了定位系统。与 SSSound 相比,记录的四旋翼飞行器噪声具有宽带噪声。考虑到这些 SSSound 特性,改进了 SSSLPS 的抗噪性,在 TDMA 和 FDMA 调制下,分别实现了 12×6 米范围内 23.2 毫米和 31.6 毫米的定位精度。结果表明,SSSLPS 是一种准确、强大的定位系统,具有抗噪性,即使在小型温室中也可用于四旋翼飞行器的操作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b0/7180864/385bbd82bd05/sensors-20-01981-g0A1.jpg

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