A robot manages power by predicting user tasks and scheduling charging during idle periods to maintain operational readiness.
Dynamic series-parallel interconnection of battery modules adjusts terminal voltage to eliminate bulky on-board chargers and reduce DC voltage ripple.
A charging station guides vehicles to available ports using differentiated weak power signals.
Segmented lithium-ion battery elements allow manual replacement without external equipment, resolving weight and ease-of-operation trade-offs.
Magnetic couplers measure coupling coefficients to determine pad alignment, reducing mechanical complexity and cost in wireless power systems.
Occupancy sensors detect vehicle presence and trigger automatic wireless authentication, eliminating manual interaction steps.
A voltage generator coupled to a vehicle axle converts mechanical rotation into electrical energy for onboard battery charging.
Dynamic policy control coordinates multiple power outputs, resolving scheduling delays and security risks in electric vehicle charging stations.
A vehicle controller exits sleep mode to detect control pilot signal changes during EV charging.
A control unit generates reactive power plans to stabilize distribution network voltage using vehicle storage batteries.
A modular electric vehicle recharging station system integrates with existing building electrical distribution infrastructure.
Segmenting braking into stages based on voltage change rates prevents driver confusion and coil overruns during wireless charging alignment.
Primary-side pulse pattern modulation eliminates secondary DC/DC converters, reducing weight and losses while maintaining efficiency at partial load.
Billing server supplies power to vehicle thermal units, preserving battery capacity for driving range.
A control system synchronizes electric vehicle charging current with photovoltaic grid feed-in using integrated measurement networks.
Constant current distribution maintains stable output voltage across varying loads while reducing component stress in underwater systems.
A vehicle charging control apparatus manages automatic moving and parking functions to optimize wireless charging operations.