成果報告書詳細
管理番号20130000000494
タイトル*平成24年度中間年報 IT融合による新社会システムの開発・実証プロジェクト (農商工連携分野)農業産業化ジャパンクオリティ・システム形成に向けたスマートSCM融合基盤の開発
公開日2013/10/1
報告書年度2012 - 2012
委託先名デザイナーフーズ株式会社 国立大学法人豊橋技術科学大学 日本電気株式会社
プロジェクト番号P12009
部署名電子・材料・ナノテクノロジー部
和文要約
英文要約Title: IT Integration-based New Social System Development and Demonstration Projects / Collaboration among agriculture, commerce and industry field / Development of a Platform that Combines IT with SCM to Achieve Strategic Production and Sales in the Japan Quality Systems Agriculture Field (FY2012-FY2013) FY2012 Annual Report

1. Relationship in mineral components between soils and fruits of tomato
The objective of this study was to examine cultivation method of the high quality tomato to evaluate relationship in mineral components between soil and fruit of tomato. Three fruits would be collected from a plant in different fields and soils would be collected from 3 parts each 15 cm apart from the plant. Three fruits would be combined to make a composite sample and soils collected from 3 parts were also mixed well to make composite sample. In this fiscal year, soils and fruits were collected 13 times from 5 different fields. All of 93 samples were obtained. Soils and fruits would be analyzed the parameters which are considered to affect quality of tomato.
In addition, for obtaining of the information of soils and green house environment, three evaluation apparatus were constructed.

2. Fabrication of a mineral monitoring sensor to measure soils of medium cultures
Mineral ions, which are Mg2+, Ca2+, K+, etc., are important information to product high-value crops. In this project, comparing mineral values between solution in berry of tomato and solution in soil of medium culture are proposed. Therefore, a miniaturized mineral monitoring sensor, which is capable of on-site measurement in cultivation environment, is required. We studied an optimum measurement method and fabricated the sensor chip using large-scale-integrated (LSI) technology. A redox type sensor using three electrodes measurement method and a potential sensor of ion-sensitive field-effect transistor (ISFET) were investigated. In addition, the sensor chip was successfully fabricated.

3. Implementaion of IT-integrated platform and planning business model.
To identify the method to send the component data in the soil (potassium, magnesium, calcium, etc.) and the interface of the information (ID, location, time, etc.) necessary for visualization of mineral component in the soil for implementation of IT-integrated platform. We completed the basic design about each function such as sensor agent to enable the communication between sensor gateway and IT-integrated platform, data aggregation from sensor gateway, and distribution map creation to visualize the component in the soil based on accumulated data. The system (IT-integrated platform) to be developed consists of the following components:
1)Mechanism to collect the data of mineral component in the soil measured by mineral sensor 2)Mechanism to accumulate the collected data of mineral component 3)Mechanism to analyze the tendency, take statistics and visualize it for accumulated data
In FY2013, we will do the detailed design for each function and implement the application programs based on the basic design, and will complete the implementation of IT-integrated platform.
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