What Causes Battery Degradation?
Battery degradation occurs due to a combination of physical and chemical changes within the cell. Contributing factors include:- Repeated charge and discharge cycles
- Extreme operating temperatures
- Passage of time (even when unused)
Types of Aging
Key degradation mechanisms include the growth of the solid electrolyte interphase (SEI), lithium plating, and loss of active material. These are covered in detail in the degradation overview.
Defining State of Health (SoH)
State of Health (SoH) is a metric that quantifies how much a battery has degraded compared to its original state. It is typically expressed as a percentage:- 100%: Brand-new battery
- Lower values indicate reduced capacity or performance
Methods for Measuring SoH
Capacity-Based SoH
The most common definition measures how much of the original capacity remains. For example, if a battery was originally rated for 100 Ah and now delivers only 80 Ah, its SoH is 80%.This is measured under specific discharge conditions, and different conditions
may yield different SoH measurements.
Resistance-Based SoH
Since internal resistance increases with aging, some methods estimate SoH by tracking the rise in resistance over time. Higher resistance leads to:- Greater energy losses
- Reduced power output
Model-Based SoH Estimation
Advanced battery management systems (BMS) use a combination of:- Real-time data
- Historical usage patterns
- Electrochemical models
Why SoH Matters
Monitoring SoH is crucial for ensuring reliable battery operation:
Knowing when a battery has reached an unacceptable SoH threshold helps determine when it should be:
- Replaced
- Repurposed (e.g., for second-life applications)
- Recycled