Aiming at the instability of boost converter which is easily caused by grid fluctuation and load transformation, a boost-type PFC converter based on improved sliding mode is designed by using improved convergence law. The system improves the instability performance of the system caused by circuit parameter regression, input voltage fluctuation and load disturbance, and enhances the system interference resistance under the condition of ensuring high power factor of the grid-side voltage and current. A comparative analysis of the simulation models of the improved sliding mode-based boost-type PFC converter and the dual closed-loop PI-controlled boost-type converter is constructed by MATLAB, which verifies the superiority of this control strategy in improving the power factor and enhancing the interference immunity.