Transitioning from a Comprehensive Early Warning System to a CAP based system: The Virgin Islands Experience

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Transcription:

Transitioning from a Comprehensive Early Warning System to a CAP based system: The Virgin Islands Experience Presented by: Dale Lake, Emergency Communications Manager Department of Disaster Management

PRESENTATION OUTLINE Comprehensive People-centered Early Warning System Background Risk Knowledge Monitoring and Warning Dissemination and Communication Response Capability Good Practices Challenges and Lessons Learnt Priorities for Enhancement Transitioning to a CAP based system Current status Next steps

ELEMENTS OF BVI S EARLY WARNING SYSTEM

RISK KNOWLEDGE 1997 - Hazard Risk Assessment Project (HRAP) 2004-2006 - Quantitative Risk Assessment Project (QRAP) Included potential economic loss models and hazard maps in GIS UPRM Geology, Slope/Cut Maps and an assessment of erosion issues in Anegada and north coast of Tortola 2008 - USGS Paleoseismic studies on Anegada 2012 - UNDP R3i project Tsunami Inundation Maps developed as part of the Modelling focused on six scenarios including two underwater landslides Bathymetric mapping of 4 major islands

RISK KNOWLEDGE 2015 - Sea-bed mapping project and hydrographic survey Partnership of the National Parks Trust of the Virgin Islands (NPT), the UK Hydrographic Office and the Centre for Environment, Fisheries and Aquaculture Sciences (CEFAS) Encompassed the underwater mapping of critical areas related to biodiversity conservation Entailed the acquisition of both the measurement of the depth of the sea (or bathymetry) and marine habitats along the Sir Francis Drake Channel First seabed survey of its kind in the British Virgin Islands

Multi-hazard Maps

Monitoring and Warning Hurricanes/Cyclonic Events Antigua and Barbuda Meteorological Service National Hurricane Center StormGeo Wilkens Weather Technologies UK meteorological resources Earthquakes MOUs with Puerto Rico Strong Motion Programme and Puerto Rico Seismic Network Strong Motion Sensors strategically located throughout the Territory Tsunami Tsunami inundation maps for Tortola and the 3 major islands Arrangements with Puerto Rico Seismic Network Coverage under the Pacific Tsunami Warning Center The Control Room of the Royal Virgin Islands Police Force serves as the 24-Hour Tsunami Warning Focal Point Flooding 18 Weather stations (BVIAA and DDM) strategically located throughout Territory DEWETRA platform

DDM AND PRSN Partnership DDM signed an MOU with PRSN in 1999 Relationship has facilitated linkages with USGS, UNAVCO, PRSMP & expertise from UPRM

DISSEMINATION & COMMUNICATION National Emergency Broadcast System (NEBS) Siren Network Radio Data System Radio Communication comprises of more than 70 radios including VHF, HF & UHF can be reached instantly from the NEOC and supported by six qualified amateur operators. Short Message Service (SMS) test messaging service component of phone, web or mobile communication systems MOUs with all cellular providers

Response Capability: Caribe Wave/Lantex Exercises 2015 4200 persons including Premier, Deputy Premier and Minister of Education 2016 4700 persons including several financial institutions and schools

Training

PUBLIC AWARENESS DDM TV Programme Focus DDM Facebook Page DDM YouTube Channel

Tsunami Ready Designation May 2014

Innovation and Good Practices Being able to: Tie all the elements of the Early Warning System together and to ensure there is redundancy built in Build a system from scratch to provide the level of alert and warning to the isolated communities Connect all of this elements of the EWS into the SMART Communities model which will be piloted in 3 communities in 2016-2018

CHALLENGES The need for constant upgrading of equipment due to changes in technology Remoteness of BVI communities Transient nature of the BVI LESSONS LEARNED The need for redundancy and ensuring that community needs are addressed Adapting the EWS to suit the local terrain and environment The need to have legislation that governs the use and maintenance of the system Importance of constantly educating the population about: the various elements of the EWS how each component work

Priorities for Enhancement Improve the ability of RVIPF (TWFP) to receive and disseminate tsunami warnings (e.g. EMWIN) Continue annual simulation exercises and focus on community DRR integration programmes Complete hazard data sets for smaller islands including microzonation/soil study and complete LIDAR coverage for all islands Expand/upgrade strong motion sensor programme Full transition to digital systems and incorporation of CAP

Transitioning to a CAP based system Allows for messages to be disseminated simultaneously using a diversity of media Radio Television SMS Siren Being able to use the most appropriate medium that best targets the specific community to receive the warning

Legislation Framework: DM Bill 2011 Defines an early warning system Set of capacities needed to generate and disseminate timely and meaningful warning information to enable individuals, communities and organisations threatened by a hazard to prepare and act appropriately and in sufficient time to reduce the possibility of harm or loss Makes provisions for the establishment and operation of a National Multi-Hazard Alert System National Emergency Broadcast System Siren Emergency communications Other warning systems as may be prescribed Operated under the supervision of the Director, Disaster Management

CAP based Early Warning System for the BVI

CAP based Early Warning System for the BVI NEOC Encoder Unit with CAP functionality Ability to generate and disseminate simple CAP messages to the CAP-ready National Multi- Hazard Alert System Primary Entry Point - Radio Station (ZBVI) Serves as a redundancy to retransmit CAP messages from NEOC Encoder Unit Monitors messages and chooses the higher quality data from the VPN and the PSTN links Decoding end points (CAP-based television, radio, siren, bulletin board Data validation and dissemination to individuals and communities

CAP based Early Warning System for the BVI: Next Steps Convert the existing equipment to CAP-compliant hardware Transition from dynamic IPs to static IPs Expand the decoding end-points Additional radio/television stations Cell providers Acquire a dedicated CAP-server Expand the GIS datasets Updated topography LiDAR for the entire Territory

Department of Disaster Management #3 Wailing Road, MacNamara, Tortola VG1110, Virgin Islands Tel: 284 468 4200 Fax: 284 494 2024 www.bviddm.com