METHOD AND APPARATUS FOR MITIGATING STEERING WHEEL SHAKE
The present invention relates to a technology of mitigating shaking of a steering wheel, and more particularly to a steering wheel shake mitigating method and a steering wheel shake mitigating apparatus by which shaking of the steering wheel is mitigated by generating a steering wheel shake mitigating signal using a torque signal.
1 . A steering wheel shake mitigating apparatus comprising:
a torque signal input unit for receiving a torque signal;
a steering wheel shake mitigating signal generating unit for passing the input torque signal through a first order filter to filter the input torque signal in the first order, differentiating the first order filtered torque signal in an n-th order (n≧2) to generate differential signals corresponding to the orders, combining signals obtained by multiplying the differential signals corresponding to the orders by corresponding gains, and passing the combined signals through a second order filter to filter the combined signals in the second order, and generating a steering wheel shake mitigating signal; and
a motor control unit for controlling a motor based on the steering wheel shake mitigating signal.
2 . The steering wheel shake mitigating apparatus as claimed in claim 1 , wherein the first order filter is a high pass filter for filtering a steering wheel shake generating frequency band, and the second order filter is a low pass filter for filtering the steering wheel shake generating frequency band.
3 . The steering wheel shake mitigating apparatus as claimed in claim 1 , wherein shaking of the steering wheel is vibrations transferred to the steering wheel due to an unbalance of tires.
4 . A steering wheel shake mitigating method by using a steering wheel shake mitigating apparatus, comprising the steps of:
receiving a torque signal;
passing the input torque signal through a first order filter to filter the input torque signal in the first order;
differentiating the first order filtered torque signal in an n-th order (n≧2) to generate differential signals corresponding to the orders;
combining the differential signals corresponding to the orders by corresponding gains;
passing the combined signals through a second order filter to filter the combined signals in the second order, and generating a steering wheel shake mitigating signal; and
controlling a motor based on the steering wheel shake mitigating signal.