4.7 Article

Interoperable agro-meteorological observation and analysis platform for precision agriculture: A case study in citrus crop water requirement estimation

期刊

COMPUTERS AND ELECTRONICS IN AGRICULTURE
卷 138, 期 -, 页码 175-187

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compag.2017.04.019

关键词

Sensor web enablement; Sensor Observation Service; Crop water requirement; Agro-meteorological monitoring; Wireless Sensor Network

资金

  1. Information Technology Research Academy (ITRA), Media Lab Asia, Department of Electronics and Information Technology (DeitY), Ministry of Communications and Information Technology, Government of India [ITRA/15(66)/Water/PDMH/02]

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Advances in Internet of Things (IoT) based sensing systems have improved capabilities to precisely monitor environmental conditions. Plants are sessile organisms and are affected by biotic and abiotic stresses caused due to surrounding environmental conditions such as soil water content, pest/disease infestation, and soil health. High-resolution sensing (Wireless Sensor Networks (WSN) Systems) of agrometeorological parameters helps to solve critical issues about the crop-weather-soil continuum. Currently, many WSN systems are deployed all over the World for precision agriculture purposes. Although there have been many improvements in the communication aspects of the WSN's, the data dissemination and near real-time analysis components for taking dynamic decision, particularly in agriculture domain has not matured. The current WSN systems do not have a standardized way of data discovery, access, and sharing, which impedes the integration of data across various distributed sensor networks. This study addresses above issues through the adaptation of a framework based on Open Geospatial Consortium (OGC) standards for Sensor Web Enablement (SWE). For precision agriculture applications a cost-effective, standardized sensing system (hardware and software) has been developed, which includes functionalities such as sensors plug-n-play, remote monitoring, tools for crop water requirement estimation, pest, disease monitoring, and nutrient management. Also, the modeling techniques were integrated with the interoperable web-enabled sensing system for addressing water management problems of horticultural crops in semi-arid areas. (C) 2017 Elsevier B.V. All rights reserved.

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