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利用地面平台进行田间植物结构特征测量的设计考虑因素。

Design Considerations for In-Field Measurement of Plant Architecture Traits Using Ground-Based Platforms.

机构信息

Department of Biological and Agricultural Engineering, North Carolina State University, Raleigh, NC, USA.

Department of Civil and Environmental Engineering, Utah State University, Logan, UT, USA.

出版信息

Methods Mol Biol. 2022;2539:171-190. doi: 10.1007/978-1-0716-2537-8_15.

Abstract

This work provides a high-level overview of system design considerations for measuring plant architecture traits in row crops using ground-based, mobile platforms. High-throughput phenotyping technologies are commonly deployed in isolated growth chambers or greenhouses; however, there is a need for field-based systems to measure large quantities of plants exposed to natural climates throughout a growing season. High-throughput methods using ground-based mobile systems collect valuable phenotypic information at higher temporal resolutions compared to manual methods (e.g., handheld calipers and measuring sticks). Additionally, the close proximity to plants when using ground-based systems compared to aerial platforms enables plant phenotyping at the organ level. While there is no single best platform for obtaining ground-based plant measurements across crop varieties with different planting configurations, there are a wide range of off-the-shelf systems and sensors that can be integrated to accommodate varying row widths, plant spacing, plant heights, and plot sizes, in addition to emerging commercially available platforms. This chapter will provide an overview of sensor types suitable for phenotyping plant size and shape, as well as provide guidance for deployment with ground-based systems, including push carts or buggies, modified tractors, and robotic platforms.

摘要

本工作提供了一个关于使用地面移动平台测量行作物植物结构特征的系统设计考虑因素的高级概述。高通量表型技术通常在独立的生长室或温室中部署;然而,需要基于田间的系统来测量大量在整个生长季节中暴露于自然气候下的植物。与手动方法(例如,手持卡尺和测量棒)相比,使用地面移动系统的高通量方法可以以更高的时间分辨率收集有价值的表型信息。此外,与使用空中平台相比,当使用地面系统时,可以在器官水平上进行植物表型分析。虽然没有一种单一的最佳平台可以在不同种植配置的作物品种中获得地面植物测量值,但有各种各样的现成系统和传感器可以集成在一起,以适应不同的行宽、植物间距、植物高度和地块大小,以及新兴的商业可用平台。本章将概述适合植物大小和形状表型分析的传感器类型,并为地面系统的部署提供指导,包括推车或手推车、改装拖拉机和机器人平台。

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