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DOI10.1371/journal.pone.0210562
A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery
Barry, D. Andrew1; Liardon, Jean-Luc1; Paccaud, Philippe1; Klaus, Pascal1; Shaik, Nawaaz S. Gujja1; Rahaghi, Abolfazl Irani1; Zulliger, Ludovic1; Beguin, Jerome1; Geissmann, Beat1; Tulyakov, Stepan2; Ivanov, Anton2; Wynn, Htet Kyi1; Lemmin, Ulrich1
发表日期2019
ISSN1932-6203
卷号14期号:2
英文摘要

Two complementary measurement systems-built upon an autonomous floating craft and a tethered balloon-for lake research and monitoring are presented. The autonomous vehicle was assembled on a catamaran for stability, and is capable of handling a variety of instrumentation for in situ and near-surface measurements. The catamaran hulls, each equipped with a small electric motor, support rigid decks for arranging equipment. An electric generator provides full autonomy for about 8 h. The modular power supply and instrumentation data management systems are housed in two boxes, which enable rapid setup. Due to legal restrictions in Switzerland (where the craft is routinely used), the platform must be observed from an accompanying boat while in operation. Nevertheless, the control system permits fully autonomous operation, with motion controlled by speed settings and waypoints, as well as obstacle detection. On-board instrumentation is connected to a central hub for data storage, with real-time monitoring of measurements from the accompanying boat. Measurements from the floating platform are complemented by mesoscale imaging from an instrument package attached to a He-filled balloon. The aerial package records thermal and RGB imagery, and transmits it in real-time to a ground station. The balloon can be tethered to the autonomous catamaran or to the accompanying boat. Missions can be modified according to imagery and/or catamaran measurements. Illustrative results showing the surface thermal variations of Lake Geneva demonstrate the versatility of the combined floating platform/balloon imagery system setup for limnological investigations.


WOS研究方向Science & Technology - Other Topics
来源期刊PLOS ONE
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/93418
作者单位1.Ecole Polytech Fed Lausanne, Lab Technol Ecol ECOL, Fac Environm Nat Architectural & Construit ENAC, IIE,Stn 2, Lausanne, Switzerland;
2.Ecole Polytech Fed Lausanne, ESC, Stn 13, Lausanne, Switzerland
推荐引用方式
GB/T 7714
Barry, D. Andrew,Liardon, Jean-Luc,Paccaud, Philippe,et al. A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery[J],2019,14(2).
APA Barry, D. Andrew.,Liardon, Jean-Luc.,Paccaud, Philippe.,Klaus, Pascal.,Shaik, Nawaaz S. Gujja.,...&Lemmin, Ulrich.(2019).A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery.PLOS ONE,14(2).
MLA Barry, D. Andrew,et al."A low-cost, autonomous mobile platform for limnological investigations, supported by high-resolution mesoscale airborne imagery".PLOS ONE 14.2(2019).
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