funded
Cardano-Heartbeat (CEM) 💞
Current Project Status
In Progress
Amount
Received
$40,000
Amount
Requested
$40,000
Percentage
Received
100.00%
Solution

Develop a Critical Event Management System including Incident Alerts, risk-analysis dashboard, and pre/post-incident strategies.

Problem
Addresses Challenge
Feasibility
Auditability
Cardano-Heartbeat (CEM) 💞

SPO, Full-stack/web developer & DevOps**

<https://github.com/sublayerio>

Ken Adams (KEWW) SPO, TEEX Infrastructure Protection, FEMA NIMS ICS, marketing, education content

<https://www.youtube.com/channel/UCJHMqKAgmyd82ylnyBFC79Q>

Tony [PIADA] SPO, Network, IT, Automation

<https://www.linkedin.com/in/tonyburger/>

<https://github.com/eastpiada>

Wael [PIADA] SPO, Project/product manager, Marketing, Data Analyst

<https://www.linkedin.com/in/wael-ivie/>

<https://github.com/AstroWa3l>

Wayne [OTG] SPO, DevOps, Electronics & Hardware, Stake Pool Resiliency Specialist

<https://armada-alliance.com/identities/wcat-otg>

<https://github.com/wcatz>

Sayshar [SRN] SPO, Electronics & Hardware, IT, Automation

<https://www.linkedin.com/in/sayshar-nair/>

We are founding members of the Armada Alliance, a Cardano Stake Pool Alliance🏴‍☠️

https://armada-alliance.com

How will the Cardano Heartbeat CEM be designed and developed?

First, understand that a Critical Event Management Platform employs various technologies and data to take manual processes and automate them to make the early notification, expedite recovery, and maintain operations during emergencies.

A CEM platform consists of three key elements and our approach to addressing these elements:

1. Risk Analysis

Utilizing the experience and training through FEMA and the National Domestic Preparedness Consortium, we will complete and provide a Threat & Hazard Identification & Risk Assessment & Stakeholder Preparedness Review (THIRA/SPR assessment) to be completed by a certified TEEX Infrastructure Protection Professional.

Development of "Stake Pool Resiliency and Security" self-assessment survey. This quiz-style survey compiled by multiple SPOs in this project and the greater SPO community will provide an accurate assessment of current capabilities across the network. The result will benefit the Cardano Community of SPO's with a verifiably documented understanding of the risks and hazards, which will determine the level of capability needed to address those risks. This path allows us to effectively estimate the network's current risk and resiliency, identify gaps, and justify the approach for addressing them through tools like the Cardano Heartbeat CEM.

2. Mass notification system

Similar to tools like Mellium, participation in the Cardano Heartbeat CEM will grow into the immediate notification of emerging threats like hurricanes, civil unrest, or natural disasters near-critical data centers and bare metal SPOs alike, as well as impulse disaster notifications like seismic activity or cyber terrorism.

3. Incident management/recovery

Based upon provided Risk Analysis Data and Mass Notification Participation, SPOs can now prepare for legitimate threats in their area of operation. Ideally, resiliency options are implemented pre-incident and tested for operability.

Knowing the risks, networking with SPOs, and developing best practice protocols will allow stronger responses to active incidents and highly expedited recovery time through pre-designed failover systems and tested alternatives.

Deliverables (short-term, 3-months from funding)

  • THIRA-SRC: Threat & Hazard Identification & Risk Assessment & Stakeholder Preparedness Review by Certified TEEX&FEMA professional.

  • Cardano Stake Pool Resilience and Security Survey Quiz.

  • After completion, the pool operator will be able to download or have emailed, a checklist and information on how to better secure their operations.

  • Develop SPO disaster recovery plans drafted for community peer review.

  • APIs to gather ad-hoc data feeds for information about:

  • Cardano nodes and network health

  • Weather Data

  • Critical Infastructure

  • Natural Disaster warnings

  • Cybersecurity threats

  • Marketing/education campaign to bring awareness to potential stake pool threats/risk, stake pool resiliency, and disaster/emergency recovery.

  • Establish open-source GitBook for document retention

  • Establish open-source GitHub for project development

  • BETA Version - Cardano Heartbeat CEM Dashboard Web app for a selected number of Cardano stake pool operators.

Deliverables (long-term 6-months from funding):

  • SPO Warning/disaster alert message system
  • Public release of Cardano Heartbeat CEM dashboard with real-time data visualizations and interactive capabilities. This will display risk/hazards to the Cardano Network and SPOs in a nice user interface.
  • Cybersecurity, hardware stress testing, and protocol testing using a private testnet
  • Finalized SPO Disaster Recovery Plans published freely to the public.

Long Term Considerations (Beyond Funding Period, 12- months from funding):

  • Trustless Emergency SPO cluster with automated failover methods via smart contracts.

  • Validation Tokens/NFT for SPOs who meet a defined set of standards for Stake Pool operation.

  • Wiki for documentation retention and moving away from paid services.

  • Future Funding Options (dependent on adoption and future development)

  • Project Catalyst

  • Donations to the project

Detailed Budget:

Data Aggregation and Risk analysis - $12,000

Marketing and Education - $4,000

Hardware/software - $6,000

Web Development - $9,000

Web hosting services - $500

App Design & Integration - $8,500

<https://armada-alliance.com/status>

<https://armada-alliance.com/blogs/rpi-resiliency-sbc-otg-blog>

<https://github.com/armada-alliance/armada-ping>

<https://github.com/mellium>

<https://www.youtube.com/watch?v=0ESufjRxAyI>

close

Playlist

  • EP2: epoch_length

    Authored by: Darlington Kofa

    3m 24s
    Darlington Kofa
  • EP1: 'd' parameter

    Authored by: Darlington Kofa

    4m 3s
    Darlington Kofa
  • EP3: key_deposit

    Authored by: Darlington Kofa

    3m 48s
    Darlington Kofa
  • EP4: epoch_no

    Authored by: Darlington Kofa

    2m 16s
    Darlington Kofa
  • EP5: max_block_size

    Authored by: Darlington Kofa

    3m 14s
    Darlington Kofa
  • EP6: pool_deposit

    Authored by: Darlington Kofa

    3m 19s
    Darlington Kofa
  • EP7: max_tx_size

    Authored by: Darlington Kofa

    4m 59s
    Darlington Kofa
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