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A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor

We have tried to develop the guidance system for farmers to cultivate using various phenological indices. As the sensing part of this system, we deployed a new Wireless Sensor Network (WSN). This system uses the 920 MHz radio wave based on the Wireless Smart Utility Network that enables long-range w...

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Autores principales: Kameoka, Shinichi, Isoda, Shuhei, Hashimoto, Atsushi, Ito, Ryoei, Miyamoto, Satoru, Wada, Genki, Watanabe, Naoki, Yamakami, Takashi, Suzuki, Ken, Kameoka, Takaharu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5464192/
https://www.ncbi.nlm.nih.gov/pubmed/28448452
http://dx.doi.org/10.3390/s17050966
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author Kameoka, Shinichi
Isoda, Shuhei
Hashimoto, Atsushi
Ito, Ryoei
Miyamoto, Satoru
Wada, Genki
Watanabe, Naoki
Yamakami, Takashi
Suzuki, Ken
Kameoka, Takaharu
author_facet Kameoka, Shinichi
Isoda, Shuhei
Hashimoto, Atsushi
Ito, Ryoei
Miyamoto, Satoru
Wada, Genki
Watanabe, Naoki
Yamakami, Takashi
Suzuki, Ken
Kameoka, Takaharu
author_sort Kameoka, Shinichi
collection PubMed
description We have tried to develop the guidance system for farmers to cultivate using various phenological indices. As the sensing part of this system, we deployed a new Wireless Sensor Network (WSN). This system uses the 920 MHz radio wave based on the Wireless Smart Utility Network that enables long-range wireless communication. In addition, the data acquired by the WSN were standardized for the advanced web service interoperability. By using these standardized data, we can create a web service that offers various kinds of phenological indices as secondary information to the farmers in the field. We have also established the field management system using thermal image, fluorescent and X-ray fluorescent methods, which enable the nondestructive, chemical-free, simple, and rapid measurement of fruits or trees. We can get the information about the transpiration of plants through a thermal image. The fluorescence sensor gives us information, such as nitrate balance index (NBI), that shows the nitrate balance inside the leaf, chlorophyll content, flavonol content and anthocyanin content. These methods allow one to quickly check the health of trees and find ways to improve the tree vigor of weak ones. Furthermore, the fluorescent x-ray sensor has the possibility to quantify the loss of minerals necessary for fruit growth.
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spelling pubmed-54641922017-06-16 A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor Kameoka, Shinichi Isoda, Shuhei Hashimoto, Atsushi Ito, Ryoei Miyamoto, Satoru Wada, Genki Watanabe, Naoki Yamakami, Takashi Suzuki, Ken Kameoka, Takaharu Sensors (Basel) Article We have tried to develop the guidance system for farmers to cultivate using various phenological indices. As the sensing part of this system, we deployed a new Wireless Sensor Network (WSN). This system uses the 920 MHz radio wave based on the Wireless Smart Utility Network that enables long-range wireless communication. In addition, the data acquired by the WSN were standardized for the advanced web service interoperability. By using these standardized data, we can create a web service that offers various kinds of phenological indices as secondary information to the farmers in the field. We have also established the field management system using thermal image, fluorescent and X-ray fluorescent methods, which enable the nondestructive, chemical-free, simple, and rapid measurement of fruits or trees. We can get the information about the transpiration of plants through a thermal image. The fluorescence sensor gives us information, such as nitrate balance index (NBI), that shows the nitrate balance inside the leaf, chlorophyll content, flavonol content and anthocyanin content. These methods allow one to quickly check the health of trees and find ways to improve the tree vigor of weak ones. Furthermore, the fluorescent x-ray sensor has the possibility to quantify the loss of minerals necessary for fruit growth. MDPI 2017-04-27 /pmc/articles/PMC5464192/ /pubmed/28448452 http://dx.doi.org/10.3390/s17050966 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kameoka, Shinichi
Isoda, Shuhei
Hashimoto, Atsushi
Ito, Ryoei
Miyamoto, Satoru
Wada, Genki
Watanabe, Naoki
Yamakami, Takashi
Suzuki, Ken
Kameoka, Takaharu
A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor
title A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor
title_full A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor
title_fullStr A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor
title_full_unstemmed A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor
title_short A Wireless Sensor Network for Growth Environment Measurement and Multi-Band Optical Sensing to Diagnose Tree Vigor
title_sort wireless sensor network for growth environment measurement and multi-band optical sensing to diagnose tree vigor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5464192/
https://www.ncbi.nlm.nih.gov/pubmed/28448452
http://dx.doi.org/10.3390/s17050966
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