Suppr超能文献

瑞士联邦理工学院田间表型分析平台FIP:一种电缆悬挂式多传感器系统。

The ETH field phenotyping platform FIP: a cable-suspended multi-sensor system.

作者信息

Kirchgessner Norbert, Liebisch Frank, Yu Kang, Pfeifer Johannes, Friedli Michael, Hund Andreas, Walter Achim

机构信息

Institute of Agricultural Sciences, Group of Crop Sciences, ETH Zürich, Universitätstrasse 2, LFW C58, 8092 Zürich, Switzerland.

出版信息

Funct Plant Biol. 2016 Feb;44(1):154-168. doi: 10.1071/FP16165.

Abstract

Crop phenotyping is a major bottleneck in current plant research. Field-based high-throughput phenotyping platforms are an important prerequisite to advance crop breeding. We developed a cable-suspended field phenotyping platform covering an area of ~1ha. The system operates from 2 to 5m above the canopy, enabling a high image resolution. It can carry payloads of up to 12kg and can be operated under adverse weather conditions. This ensures regular measurements throughout the growing period even during cold, windy and moist conditions. Multiple sensors capture the reflectance spectrum, temperature, height or architecture of the canopy. Monitoring from early development to maturity at high temporal resolution allows the determination of dynamic traits and their correlation to environmental conditions throughout the entire season. We demonstrate the capabilities of the system with respect to monitoring canopy cover, canopy height and traits related to thermal and multi-spectral imaging by selected examples from winter wheat, maize and soybean. The system is discussed in the context of other, recently established field phenotyping approaches; such as ground-operating or aerial vehicles, which impose traffic on the field or require a higher distance to the canopy.

摘要

作物表型分析是当前植物研究中的一个主要瓶颈。基于田间的高通量表型分析平台是推进作物育种的重要前提。我们开发了一个面积约1公顷的电缆悬挂式田间表型分析平台。该系统在冠层上方2至5米处运行,可实现高图像分辨率。它可承载高达12千克的有效载荷,并且能够在恶劣天气条件下运行。这确保了在整个生长季节都能进行定期测量,即使在寒冷、多风及潮湿的条件下也不例外。多个传感器可获取冠层的反射光谱、温度、高度或结构。以高时间分辨率从早期发育到成熟进行监测,有助于确定动态性状及其与整个季节环境条件的相关性。我们通过冬小麦、玉米和大豆的选定示例展示了该系统在监测冠层覆盖度、冠层高度以及与热成像和多光谱成像相关性状方面的能力。我们将在其他最近建立的田间表型分析方法的背景下讨论该系统,例如地面操作或空中飞行器,它们会给田间带来交通问题或需要与冠层保持更高的距离。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验