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基于塔架的冠层反射率监测技术进展:AMSPEC-III系统

Technological Advancement in Tower-Based Canopy Reflectance Monitoring: The AMSPEC-III System.

作者信息

Tortini Riccardo, Hilker Thomas, Coops Nicholas C, Nesic Zoran

机构信息

Integrated Remote Sensing Studio, Department of Forest Resources Management, University of British Columbia, 2424 Main Mall, Vancouver, BC V6T 1Z4, Canada.

College of Forestry, Oregon State University, 231 Peavy Hall, Corvallis, OR 97333, USA.

出版信息

Sensors (Basel). 2015 Dec 19;15(12):32020-30. doi: 10.3390/s151229906.

Abstract

Understanding plant photosynthesis, or Gross Primary Production (GPP), is a crucial aspect of quantifying the terrestrial carbon cycle. Remote sensing approaches, in particular multi-angular spectroscopy, have proven successful for studying relationships between canopy-reflectance and plant-physiology processes, thus providing a mechanism to scale up. However, many different instrumentation designs exist and few cross-comparisons have been undertaken. This paper discusses the design evolution of the Automated Multiangular SPectro-radiometer for Estimation of Canopy reflectance (AMSPEC) series of instruments. Specifically, we assess the performance of the PP-Systems Unispec-DC and Ocean Optics JAZ-COMBO spectro-radiometers installed on an updated, tower-based AMSPEC-III system. We demonstrate the interoperability of these spectro-radiometers, and the results obtained suggest that JAZ-COMBO can successfully be used to substitute more expensive measurement units for detecting and investigating photosynthesis and canopy spectra. We demonstrate close correlations between JAZ-COMBO and Unispec-DC measured canopy radiance (0.75 ≤ R² ≤ 0.85) and solar irradiance (0.95 ≤ R² ≤ 0.96) over a three month time span. We also demonstrate close agreement between the bi-directional distribution functions obtained from each instrument. We conclude that cost effective alternatives may allow a network of AMSPEC-III systems to simultaneously monitor various vegetation types in different ecosystems. This will allow to scale and improve our understanding of the interactions between vegetation physiology and spectral characteristics, calibrate broad-scale observations to stand-level measurements, and ultimately lead to improved understanding of changing vegetation spectral features from satellite.

摘要

了解植物光合作用,即总初级生产力(GPP),是量化陆地碳循环的一个关键方面。遥感方法,特别是多角度光谱学,已被证明在研究冠层反射率与植物生理过程之间的关系方面是成功的,从而提供了一种向上扩展的机制。然而,存在许多不同的仪器设计,并且很少进行交叉比较。本文讨论了用于估计冠层反射率的自动多角度光谱辐射计(AMSPEC)系列仪器的设计演变。具体来说,我们评估了安装在更新的基于塔的AMSPEC-III系统上的PP-Systems Unispec-DC和海洋光学JAZ-COMBO光谱辐射计的性能。我们展示了这些光谱辐射计的互操作性,所得结果表明JAZ-COMBO可以成功地用于替代更昂贵的测量单元来检测和研究光合作用及冠层光谱。我们展示了在三个月的时间跨度内,JAZ-COMBO和Unispec-DC测量的冠层辐射(0.75≤R²≤0.85)和太阳辐照度(0.95≤R²≤0.96)之间的密切相关性。我们还展示了从每个仪器获得的双向分布函数之间的密切一致性。我们得出结论,具有成本效益的替代方案可能使AMSPEC-III系统网络能够同时监测不同生态系统中的各种植被类型。这将有助于扩展和提高我们对植被生理与光谱特征之间相互作用的理解,将广泛的观测校准到林分水平的测量,并最终有助于更好地理解卫星观测到的不断变化的植被光谱特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8cd/4721823/40e482c47ed6/sensors-15-29906-g001.jpg

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