Automotive Oil Pump Motor Controller Case Study
With the advent of the new energy vehicle era, electric oil pumps have gradually replaced mechanical pumps in electric and hybrid vehicles to meet high power density, miniaturization requirements, and enable precise lubrication oil pressure control, becoming a standard market configuration. Nearly all pure electric and hybrid vehicles now adopt electric oil pumps over traditional mechanical ones‌.

The oil pump delivers oil to engine friction points, ensuring circulation in the lubrication system. Most oil pumps are gear pumps comprising gears and a pump body. When the engine operates, the camshaft drives the active gear, rotating and moving oil from the inlet to the outlet via pump walls. This creates a low-pressure area to draw oil from the tank. Accumulated oil at the outlet increases pressure, forcing lubrication to friction points‌.
‌Technical Advantages
Advanced Motor & Control System‌ Incorporates Permanent Magnet Synchronous Motor (PMSM) with Field-Oriented Control (FOC) technology, delivering top-tier performance through globally leading motor and control solutions‌.
Cost-Effective Wheel-Spoke Motor Design‌ The spoke-type motor achieves equivalent performance to traditional models while reducing manufacturing costs by 20%‌.
High-Precision Position Sensing‌ Utilizes reluctance position sensors paired with software-decoding algorithms, cutting total system costs to 1/20th of mainstream solutions‌.
Optimized Output Efficiency‌ Integrated MTPA (Maximum Torque Per Ampere) algorithm enhances motor output performance under varying load conditions‌.
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