Cloud Platform for Geophysical Research
Geophysical Challenges How useful can be geophysical observations in a scope of minimizing losses from natural disasters? Has it helped to decrease the number of human victims in Nepal, and other similar places? Nepal earthquake statistics: Injured people 14,335 People in need of food assistance >3M People in need of humanitarian assistance 8,1M http://www.unocha.org/nepal 2
It's very difficult to perform geophysical research Problem It's very difficult to perform geophysical research Valuable resources are often wasted Studying Supplying Adaptation Geophysical data source Data formats and protocols Software configuration Hardware configuration Computing capacity Hardware Updates Maintenance Electricity Air conditioning Data to software Software to data Software to hardware Hardware to software Such inefficient approach requires significant amount of human efforts and money investment
Unified Cloud Platform for Geophysical Research Data Sources Geo Apps Software Hardware Data Formats Geophysical cloud solutions can help to solve the problem
Requirements Stability and high availability of services Scalability and advanced maintenance of growing geophysical data Data format unification and data conversion automation Low TCO and high ROI Centralized management within cloud Automated DevOps processes Monitoring and alert notifications in case of threats No vendor lock-in
Hybridity With Multi-Cloud 25 DCs in 11 Countries 17 DCs in 8 Countries 3 DCs in 3 Countries 11 DCs in 8 Countries 36 DCs in 25 Countries # Of Data Centers and Regions
Hybrid Cloud
Live Migration Of Workloads
Advanced Access Policies
Auto Hibernation
Automatic Horizontal Scaling
Certified Runtimes and Docker Containers
High Availability Application level load balancing, session replication, clustering Hardware level software defined storage, live migration, smart distribution
How It Works Video Demo
For more information please contact info@unigeocloud.com