利用微型无人机进行无人机气体泄漏定位与制图

Vanesa Gallego, M. Rossi, D. Brunelli
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引用次数: 27

摘要

我们提出了一个自主移动气体检测系统,以评估在广泛的户外应用特定气体浓度的测量。在恶劣的环境中,安装固定的气体传感器阵列是不切实际或不经济的,这一点尤为重要。该系统能够在潜在的危险排放区域(有毒气体泄漏)中工作,为操作人员提供完全安全的工作条件。作为无人机(UAV)的有效载荷,它可以根据气体浓度和载体速度提供具有自适应和高分辨率采样率的气体测量。每次测量都与嵌入式GPS模块提供的位置相关联。与传统系统相比,其显著特点是体积小,功耗低,成本低。最后,我们提出了一种基于气体采样频率优化车辆速度和系统功耗的新方法,从而实现寿命最大化和泄漏检测可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unmanned aerial gas leakage localization and mapping using microdrones
We present an autonomous-mobile gas detection system to assess the measurement of specific gas concentrations in a wide range of outdoor applications. This is especially of interest in those harsh environments where it is impractical or uneconomical to install a fixed array of gas sensors. The system is able to work in potentially hazardous emissions areas - toxic gas leakages - in completely secure working conditions for the operators. Used as payload on a Unmanned Aerial Vehicle (UAV), it can provide gas measurements with adaptive and high resolution sampling rates in accordance to gas concentration and carrier speed. Each measurement is associated with the location provided by the embedded GPS module. Remarkable features are the small size, the low power consumption and costs, compared to traditional systems. Finally, we presents a novel approach to optimize the speed of the vehicle and the system power consumption based on gas sampling frequency, which allows lifetime maximization and leakage detection reliability.
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