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基于光谱学的温室作物生长状况诊断新方法与仪器

[New method and instrument to diagnose crop growth status in greenhouse based on spectroscopy].

作者信息

Zhang Xi-Jie, Li Min-Zan, Cui Di, Zhao Peng, Sun Jian-Ying, Tang Ning

机构信息

Key Laboratory of Modern Precision Agriculture System Integration Research, Ministry of Education, China Agricultural University, Beijing 100083, China.

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2006 May;26(5):887-90.

Abstract

Spectral reflectance of cucumber leaves in greenhouse was measured using an ASD FieldSpec Pro VNIR spectrometer with natural illumination. Two sensitive wavelengths, 527 nm and 762 nm, were selected to evaluate the nitrogen content of the cucumber leaves. A model was established and validated using normal difference color index(NDCI) with the correlation coefficient of 0.881. Based on the above efforts, a handheld spectral instrument was developed to diagnose the growth status of the crop in greenhouse using fiber optics. The instrument was mainly composed of four parts: reflected light acquisition system, light intensity measurement unit, signal conditioning unit, and data acquisition system. The sunlight reflected by the crop was transmitted by the fiber, and passed through the light filter to obtain light at the sensitive wavelengths. Finally it was transformed into electronic signal by the photoelectric transistor, and was used to diagnose the growth status of the crop according to the evaluation model. The result showed that the developed instrument was practical.

摘要

使用配备自然光照的ASD FieldSpec Pro VNIR光谱仪测量温室中黄瓜叶片的光谱反射率。选择两个敏感波长527纳米和762纳米来评估黄瓜叶片的氮含量。使用归一化色差指数(NDCI)建立并验证了一个模型,相关系数为0.881。基于上述工作,开发了一种使用光纤诊断温室作物生长状况的手持式光谱仪器。该仪器主要由四部分组成:反射光采集系统、光强测量单元、信号调理单元和数据采集系统。作物反射的阳光通过光纤传输,经过滤光片获得敏感波长的光。最后由光电晶体管将其转换为电信号,并根据评估模型用于诊断作物的生长状况。结果表明,所开发的仪器具有实用性。

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