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Rice Cultivation Support System Equipped with Water-level Sensor System

机译:配备水位传感器系统的水稻栽培支持系统

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Abstract: Farmers are aging in Japan. They must pass along their wisdom to the future generations to protect the safety of own food. Currently, research on the cultivation management of using a field server has been made widely conducted. Traditions that leverage the data obtained from a field server is considered to be an effective technology. As system that utilizes a field server is proposed (Fujitsu 2015, Vegetalia 2015, Norio 2011). Fujitsu’s Akisai (Fujitsu 2015) and e-kakashi (Norio 2011) do not equip water-level sensor that used in rice field management because these are multipurpose agricultural management system. Paddy Watch (Vegetalia 2015) equips water-level sensor, but it cannot take a photos of the rice field and transmit them. The growing management of rice is required to the leaf color and the height of rice plant such as image analysis, but it is difficult to manage only by the sensor. In addition, water-level is a vital part of any rice field management, thus, it must be adjusted carefully. Furthermore, those systems request an access fee to networks because those systems use a 3G network. Therefore, we made a rice cultivation support system utilizing the field server operated by a mobile battery, equipped with a camera, and uses free local networks. Moreover, we made a water-level sensor system which works directly with a field server. We created a movable field server because a big one becomes a hindrance to the farm work. The data which is acquired from a field server and a water-level sensor system is uploaded to the web server automatically. Therefore, we have created a web page which can see the data and create a diary. The field server has been field tested outdoor. Results, confirm the operation of the rice cultivation support system.
机译:摘要:日本的农民正在老龄化。他们必须将自己的智慧传给子孙后代,以保护自己的食品安全。目前,已经广泛地进行了使用田间服务器的栽培管理的研究。利用从现场服务器获得的数据的传统被认为是一种有效的技术。由于提出了利用现场服务器的系统(Fujitsu 2015,Vegetalia 2015,Norio 2011)。富士通的秋赛(Fujitsu 2015)和电子卡卡西(Norio 2011)没有配备用于稻田管理的水位传感器,因为它们是多功能农业管理系统。 Paddy Watch(Vegetalia,2015年)配备了水位传感器,但无法拍摄稻田的照片并将其发送出去。水稻的生长管理对诸如图像分析之类的水稻的叶色和高度是必需的,但是仅通过传感器很难对其进行管理。此外,水位是任何稻田管理的重要组成部分,因此必须谨慎调整。此外,由于那些系统使用3G网络,因此这些系统需要网络访问费。因此,我们建立了一个水稻栽培支持系统,该系统利用由移动电池供电,装有摄像头的现场服务器,并使用免费的本地网络。此外,我们制造了可直接与现场服务器配合使用的水位传感器系统。我们创建了一个可移动的现场服务器,因为大型服务器成为农场工作的障碍。从现场服务器和水位传感器系统获取的数据会自动上传到Web服务器。因此,我们创建了一个可以查看数据并创建日记的网页。现场服务器已在室外进行了现场测试。结果,确认水稻种植支持系统的运行。

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