An Integrated System for Regional Environmental Monitoring and Management Based on Internet of Things
Интегрированная система регионального экологического мониторинга и управления на основе Интернета вещей
2014-01-31
SCID: 54.1/ceuatcrb
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APIsETLInternet of ThingsIoT application infrastructureOLAPRESTfulROLAPXinjiang case studyair temperature trendcloud computinge-Scienceenvironmental monitoringgeographical information systemgeoinformaticsglobal positioning systemgross primary productionintegrated information systemleaf area indexnet primary productionprecipitation trendreal-time operational databaseregional climate changeremote sensingwater resource availability
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Abstract (AI)
Climate change and environmental monitoring and management have received much attention recently, and an integrated information system (IIS) is considered highly valuable. This paper introduces a novel IIS that combines Internet of Things (IoT), Cloud Computing, Geoinformatics [remote sensing (RS), geographical information system (GIS), and global positioning system (GPS)], and e-Science for environmental monitoring and management, with a case study on regional climate change and its ecological effects. Multi-sensors and web services were used to collect data and other information for the perception layer; both public networks and private networks were used to access and transport mass data and other information in the network layer. The key technologies and tools include real-time operational database (RODB); extraction–transformation–loading (ETL); on-line analytical processing (OLAP) and relational OLAP (ROLAP); naming, addressing, and profile server (NAPS); application gateway (AG); application software for different platforms and tasks (APPs); IoT application infrastructure (IoT-AI); GIS and e-Science platforms; and representational state transfer/Java database connectivity (RESTful/JDBC). Application Program Interfaces (APIs) were implemented in the middleware layer of the IIS. The application layer provides the functions of storing, organizing, processing, and sharing of data and other information, as well as the functions of applications in environmental monitoring and management. The results from the case study show that there is a visible increasing trend of the air temperature in Xinjiang over the last 50 years (1962–2011) and an apparent increasing trend of the precipitation since the early 1980s. Furthermore, from the correlation between ecological indicators [gross primary production (GPP), net primary production (NPP), and leaf area index (LAI)] and meteorological elements (air temperature and precipitation), water resource availability is the decisive factor with regard to the terrestrial ecosystem in the area. The study shows that the research work is greatly benefited from such an IIS, not only in data collection supported by IoT, but also in Web services and applications based on cloud computing and e-Science platforms, and the effectiveness of monitoring processes and decision-making can be obviously improved. This paper provides a prototype IIS for environmental monitoring and management, and it also provides a new paradigm for the future research and practice; especially in the era of big data and IoT.
Key Findings
1
A novel integrated information system (IIS) combining IoT, cloud computing, geoinformatics (RS/GIS/GPS), and e-Science was developed for regional environmental monitoring and management.
2
Case study (Xinjiang, 1962–2011) found a visible increasing trend in air temperature over the last 50 years and an apparent increasing precipitation trend since the early 1980s.
3
Correlation analysis showed water resource availability (precipitation) is the decisive factor for terrestrial ecosystem indicators (GPP, NPP, LAI) in the study area.
4
The IIS architecture includes perception (multi-sensors, web services), network (public/private networks), middleware (APIs, RODB, ETL, OLAP/ROLAP, NAPS, AG, IoT-AI), and application layers (data storage, processing, sharing, applications).
5
The paper presents the IIS as a prototype and a new paradigm for future environmental monitoring and management in the era of big data and IoT.
6
Use of the IIS improved data collection via IoT, enabled web services and cloud/e-Science applications, and noticeably enhanced monitoring processes and decision-making effectiveness.
Research Object
An integrated information system (IIS) for regional environmental monitoring and management based on IoT, cloud computing, geoinformatics, and e-Science
Research Subject
The system's capability to collect, store, process, integrate and share multi-sensor and geospatial environmental data to support monitoring, analysis (e.g., temperature, precipitation, GPP/NPP/LAI correlations) and decision-making for regional environmental management
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2014-01-31
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