HomeCybersecurityCritical Infrastructure Cascade 2D: Hazard-Rate Cyberattack Propagation

Critical Infrastructure Cascade 2D: Hazard-Rate Cyberattack Propagation

Interactive 2D continuous-time hazard-rate model of a coordinated cyberattack spreading across interdependent critical-infrastructure sectors — power, water, telecom, hospital, transport, finance — where segmentation and redundancy determine whether a single breach stays contained.

Cybersecurity2DModerate60 FPS📱 Mobile-adapted⇄ 3D version
2d-cyber-terrorism ↗ Open standalone

This 2D companion to the 3D Critical Infrastructure Cascade sim keeps the same six-sector dependency graph but replaces the discrete per-step cascade with a genuine continuous-time hazard-rate (Markov jump) process: every dependency edge carries an instantaneous infection rate derived from attack intensity, segmentation and the target's redundancy, and the exact Poisson-thinning formula 1−e^(−λ·Δt) governs whether it fires each frame, regardless of frame rate. Containment races infection the same way, via each node's own recovery hazard. Raise segmentation to suppress every edge's rate, raise redundancy to both resist infection and recover faster, and watch the sector graph settle as operational, under attack, compromised, or contained in real time.

⚙ Under the hood

A 2D continuous-time hazard-rate reformulation of the critical-infrastructure cascade: the same six interdependent sectors (power, water, telecom, hospital, transport, finance) now spread compromise through per-edge infection rates and per-node containment rates racing each other as an exact Poisson-thinning process, verified numerically against its analytic exponential-waiting-time formula.

cybersecuritycritical infrastructurenetwork defensecascading failurehazard rate modelincident response

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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