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Roadmap – Developing a risk-informed and shock-responsive social protection System – Cambodia










FAO, UNICEF and WFP. 2020. Roadmap – Developing a risk-informed and shock-responsive social protection System – Cambodia. Bangkok.




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    Presentation
    Adopting anticipatory action and shock-responsive social protection to strengthen disaster preparedness and resilience: Learning from the ASEAN region
    Webinar – 4 April 2022: Key takeaway messages
    2022
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    This webinar, the fifth webinar of a series on Anticipatory Action, was called “Adopting Anticipatory Action and shock-responsive social protection to strengthen disaster preparedness and resilience: Learning from the ASEAN region”. It was co-organised with the Association of Southeast Asian Nations (ASEAN) Secretariat, in close collaboration with the Asia-Pacific Regional technical working group on Anticipatory Action and support from the European Union, by the Knowledge Sharing Platform on Resilience, within the Food and Agriculture Organization of the United Nations’ (FAO's) Office of Emergencies and Resilience. Since May 2019, the FAO-led consortium of United Nations (UN) agencies (World Food Programme, United Nations Children's Fund, UN Women), Red Cross Red Crescent Movement (German Red Cross and International Federation of Red Cross and Red Crescent Societies) and non-governmental organizations (NGOs) (Save the Children International, People in Need, and Dan Church Aid) have been implementing the Directorate-General for European Civil Protection and Humanitarian Aid Operations (DG ECHO)-funded project: Scaling up Anticipatory Action and Shock Responsive Social Protection (SRSP) with innovative use of climate risk information for disaster resilience in ASEAN. The ambition of this project was to introduce new and innovative approaches in the implementation of the ASEAN Agreement on Disaster Management and Emergency Response and its work programme. Since its inception, the project has been implementing the ASEAN Guidelines on Disaster Responsive Social Protection to support country roadmaps to incorporate it alongside Anticipatory Action. Specific target countries included: Cambodia, Myanmar, the Philippines and Viet Nam. In mid-October 2021, the project commissioned an independent external evaluation to assess the: (i) relevance of ECHO-supported interventions since 2017; (ii) efficiency and effectiveness of implementation encompassing partnerships, operational arrangements and resource utilization; (iii) achievement of results and impacts on capacity development of ASEAN member states, particularly project target countries and ASEAN; and (iv) cross-cutting issues including inclusivity and resilience. The participatory review process involved all relevant stakeholders: beneficiaries, government officials, ASEAN sector bodies, implementing UN agencies, NGO partners and others. Against this background, the webinar specifically aimed to: • present the key findings on the progress of advancing Anticipatory Action and SRSP in ASEAN (and beyond) through an institutionalized approach; • illustrate project results and lessons learned relevant to the adoption, institutionalization and sustainable financing of Anticipatory Action and SRSP, including meaningful evidence of the project’s COVID-19 cash transfer impacts on beneficiaries; and • discuss recommendations for further scaling up and sustaining the proven approaches.
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    Book (stand-alone)
    Guidance on spatial technologies for disaster risk management in aquaculture
    Full document
    2018
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    This new guide describes the application of spatial technology to improve disaster risk management (DRM) within the aquaculture sector. DRM requires interrelated actions and activities to ensure early warning, prevention, preparedness, response and recovery for a wide range of natural, technological and complex disasters that can impact aquaculture operations and livelihoods. Spatial technology refers to systems and tools that acquire, manage and analyse data that have geographic context. Some of the technologies include satellite remote sensing, aerial surveys, global positioning systems, geographic information systems, information and communication technology and other data gathering sensors used, for instance, in meteorology. Spatial technology supports activities across all phases of the DRM cycle and its rapid development provides enhanced opportunities to support DRM within the aquaculture sector. This guide is organized in two parts. Part one is the “guidance”; it is the main body of the document and describes the processes and steps for the use of spatial technology within DRM for aquaculture. Part two includes selected country case studies from Bangladesh, the Gulf of Mexico and the Caribbean, and Indonesia to illustrate the application of spatial technology in DRM for aquaculture at the national level within local contexts. Best practices at the farm and area management levels, supported by spatial technology, reduce volatility and risks and thus facilitate investment. Countries that would like aquaculture to grow sustainably and reliably are encouraged to use this guide in order to support spatial planning approaches and protect responsible investors. A separate summary version accompanies this publication.
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    Book (stand-alone)
    Guidance on spatial technologies for disaster risk management in aquaculture
    A handbook
    2018
    Also available in:
    No results found.

    This new guide describes the application of spatial technology to improve disaster risk management (DRM) within the aquaculture sector. DRM requires interrelated actions and activities to ensure early warning, prevention, preparedness, response and recovery for a wide range of natural, technological and complex disasters that can impact aquaculture operations and livelihoods. Spatial technology refers to systems and tools that acquire, manage and analyse data that have geographic context. Some of the technologies include satellite remote sensing, aerial surveys, global positioning systems, geographic information systems, information and communication technology and other data gathering sensors used, for instance, in meteorology. Spatial technology supports activities across all phases of the DRM cycle and its rapid development provides enhanced opportunities to support DRM within the aquaculture sector. This guide is organized in two parts. Part one is the “guidance”; it is the main body of the document and describes the processes and steps for the use of spatial technology within DRM for aquaculture. Part two includes selected country case studies from Bangladesh, the Gulf of Mexico and the Caribbean, and Indonesia to illustrate the application of spatial technology in DRM for aquaculture at the national level within local contexts. Best practices at the farm and area management levels, supported by spatial technology, reduce volatility and risks and thus facilitate investment. Countries that would like aquaculture to grow sustainably and reliably are encouraged to use this guide in order to support spatial planning approaches and protect responsible investors. A separate summary version accompanies this publication.

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