Fire Early Warning & Emergency Response Digital Twin
IoT Smart Fire Detection,Alarm & Automatic Water Pump Response System
01 / SAFE
CLASSROOM DIGITAL TWIN
SYSTEM MONITORING ACTIVE
SAFE
NO FIRE DETECTED
SIMULATION READY
Operator Console
Simulation Controls
PER-BROWSER SESSION
Run the intended Project A response logic without requiring physical hardware.
◉
ENABLE DASHBOARD ALARM Browser audio is off
▶
RUN FIRE RESPONSE DEMO 8-second automatic response cycle
RESET TO SAFE
PRESENTATION MODE
Audio begins only after your explicit tap. Press Esc to exit Presentation Mode.
STANDBY
Monitoring the simulated sensor input
02 Automatic Water Pump Response
STANDBY
Simulation: no response requested
STANDBY
Browser EWS: DISABLED
04 Simulated Sensor Telemetry
NORMAL
DO: HIGH · FIRE: FALSE
Live Response Path
System Flow
CURRENT WEB SIMULATION
01 Simulated Fire Event Browser trigger
02 Digital Twin State Engine Non-blocking logic
03 Fire Response Logic Alarm decision
04 Automatic Pump Response Request only
05 IoT Monitoring Browser EWS + UI
DIGITAL TWIN STATE ENGINE
BROWSER EWS PUMP REQUEST IoT DASHBOARD
State Snapshot
Simulation Telemetry
SIMULATION DATA
Runtime state SAFE
Flame sensor NORMAL
Digital signal HIGH
Fire detected FALSE
Pump requested FALSE
Trigger source WEB SIMULATION
Session scope PER-BROWSER
Physical hardware NOT REQUIRED
Browser-Observed
Event Timeline
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SCENARIO STUDY CASE
STUDI KASUS
Kebakaran Awal Akibat Hubung Singkat
A classroom scenario showing why early detection, clear warning, and a fast automatic response request matter when an area is temporarily unattended.
01 Short circuit creates a small initial flame.
02 The area is temporarily unattended .
03 Early detection identifies the fire signal.
04 Emergency logic evaluates and confirms the condition.
05 Warning activates and the pump response is requested.
06 The IoT dashboard communicates the current state.
Target Prototype Architecture
Hardware Logic & GPIO Map
DESIGN REFERENCE — NOT CURRENT WEB RUNTIME
Flame Sensor → ESP32-S3 → State Machine → Fire Alarm → Pump Driver → IoT Monitoring
GPIO4 Flame Sensor DO
GPIO15 Pump Control
GPIO16 Blue Response LED
GPIO17 Green SAFE LED
GPIO18 Red FIRE LED
GPIO21 Buzzer
REAL PUBLIC SYSTEM
What runs now
Cloudflare Pages website Browser interface Web Audio warning UI and state logic Per-browser simulation engine
TARGET HARDWARE DESIGN
Prototype components
ESP32-S3 controller Flame sensor Water pump and driver Buzzer Green, red, and blue LEDs
SIMULATED IN THIS DEMO
Digital-twin signals
Flame trigger Sensor GPIO level Alarm hardware state Pump activation request Emergency response timing
Public Runtime
Technical Status
ONLINE
System PROJECT A DIGITAL TWIN
Simulation Engine ONLINE
Dashboard ONLINE
Hosting Cloudflare Pages
Public Host projecta.synapsecircuit.com
Target Controller ESP32-S3 N16R8
Target CPU 240 MHz
Target Flame Logic HIGH = SAFE · LOW = FIRE
Current Trigger Source WEB SIMULATION
Physical Hardware Connection NOT REQUIRED
ESP32 Runtime Dependency NONE
Page Uptime 00:00:00
PROTOTYPE ENGINEERING NOTES Expand for development context
Earlier physical development validated the intended state logic and local classroom dashboard behavior. Extensive breadboard rewiring later produced unreliable external signal paths.
This standalone digital twin provides a stable classroom presentation of the detection, warning, and response concepts. Physical hardware remains a separate prototype track and is not the data source for this public site.