De Silva, H., & Ratnadiwakara, D. (2008 November). Using ICT to reduce transaction costs in
agriculture through better communication: A case-study from Sri Lanka LIRNEasia, Colombo,
Sri Lanka
Dehnen-Schmutz, K., Foster, G. L., Owen, L., & Persello, S. (2016). Exploring the role of
smartphone technology for citizen science in agriculture. Agronomy for Sustainable Development, 36, 1–8.
Di, L., & Yang, Z. (2014). Foreword to the special issue on agro-geoinformatics—The applications
of geoinformatics in agriculture. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing, 7, 4315–4316.
Dillon, T., Wu, C., & Chang, E. (2010). Cloud computing: Issues and challenges. In Advanced
Information Networking and Applications (AINA), 2010 24th IEEE international conference on.
IEEE, pp. 27–33.
Doan, A., Ramakrishnan, R., & Halevy, A. Y. (2011). Crowdsourcing systems on the world-wide
web. Communications of the ACM, 54, 86–96.
Drusch, M., et al. (2012). Sentinel-2: ESA’s optical high-resolution mission for GMES operational
services. Remote Sensing of Environment, 120, 25–36.
Eichkorn, S., Wilhelm, S., Aufmhoff, H., Wohlfrom, K., & Arnold, F. (2002). Cosmic ray-induced
aerosol-formation: First observational evidence from aircraft-based ion mass spectrometer
measurements in the upper troposphere. Geophysical Research Letters, 29.
Fretwell, S. D. (1987). Food chain dynamics: The central theory of ecology? Oikos, 50, 291–301.
Fritz, S., et al. (2012). Geo-Wiki: An online platform for improving global land cover. Environmental Modelling & Software, 31, 110–123.
Frommberger, L., & Schmid, F. (2013). Mobile4D: crowdsourced disaster alerting and reporting. In
Proceedings of the sixth international conference on information and communications technologies and development: Notes-volume 2. ACM, pp. 29–32.
Frommberger, L., Schmid, F., & Cai, C. (2013). Micro-mapping with smartphones for monitoring
agricultural development. In Proceedings of the 3rd ACM symposium on computing for
development. ACM, p. 46.
Goodall, J. L., Horsburgh, J. S., Whiteaker, T. L., Maidment, D. R., & Zaslavsky, I. (2008). A first
approach to web services for the national water information system. Environmental Modelling
& Software, 23, 404–411.
Gorelick, N. (2013). Google earth engine. In EGU general assembly conference abstracts, p 11997.
Hallgren, E. L. (1974). The University Corporation for Atmospheric Research and the National
Center for Atmospheric Research, 1960–1970: An institutional history. University Corporation
for Atmospheric Research
Han, W., Di, L., Zhao, P, Wei, Y., & Li, X. (2008). Design and implementation of GeoBrain online
analysis system (GeOnAS). In: Web and wireless geographical information systems. Springer,
pp. 27–36.
Hankin, S. C. et al. (2010). NetCDF-CF-OPeNDAP: Standards for ocean data interoperability and
object lessons for community data standards processes. In Oceanobs 2009, Venice Convention
Centre, 21–25 septembre 2009, Venise.
Hashem, I. A. T., Yaqoob, I., Anuar, N. B., Mokhtar, S., Gani, A., & Khan, S. U. (2015). The rise of
“big data” on cloud computing: Review and open research issues. Information Systems, 47,
98–115.
Haulman, D. L. (2003). US unmanned aerial vehicles in combat, 1991–2003. DTIC Document.
Heidt, H., Puig-Suari, J., Moore, A., Nakasuka, S., & Twiggs, R. (2000). CubeSat: A new
generation of picosatellite for education and industry low-cost space experimentation.
Heipke, C. (2010). Crowdsourcing geospatial data. ISPRS Journal of Photogrammetry and Remote
Sensing, 65, 550–557.
Hirafuji, M. (2014). A strategy to create agricultural big data. In Global Conference (SRII), 2014
Annual SRII. IEEE, pp. 249–250.
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