INTERACTIVE ENGINEERING DEMONSTRATION

Adaptive Multi-Cell Battery Intelligence Engine

Real-time multi-cell monitoring, imbalance detection and event-driven protection simulation.

LIVE SIMULATION

Interactive Battery Simulator

Move any cell slider to simulate a changing battery-cell voltage.

Cell 13.40 V
2.50 V4.30 V
Cell 23.40 V
2.50 V4.30 V
Cell 33.40 V
2.50 V4.30 V
Cell 43.40 V
2.50 V4.30 V
Average Voltage3.40 V
Imbalance0.00 V / 0.00%
Weakest CellCell 1
Strongest CellCell 1

Battery Health

HEALTHY

All simulated cells are within the healthy operating range.

Health Code: 0

Protection State

NORMAL

Battery operation is allowed.

Protection Code: 0

Protection Outputs

RelayON
BuzzerOFF

Battery Pack Visualization

C13.40 V
C23.40 V
C33.40 V
C43.40 V

Simulation scaling: slider position represents a simulated cell voltage from 2.50 V to 4.30 V. This is a demonstration model, not a calibrated real-voltage measurement.

State Logic

NORMALBalanced cells
DEGRADEDMinor imbalance detected
FAILSAFECritical imbalance detected
SHUTDOWNPack failure condition

How This Demonstration Relates to the Project

The browser simulator reproduces the decision logic used by the embedded battery-management demonstration: four cell values are evaluated, average and imbalance are calculated, the weakest and strongest cells are identified, and the system selects a health state and protection state. The physical project uses ESP32 inputs and Blynk telemetry; this public simulator provides an evaluator-friendly way to test the same core logic without requiring the evaluator to connect hardware.