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A novel autonomous bicycle based on control moment gyro technology
Jun Zhong1, Xia Lu1, Honghui Lan1
1College of Mechanical and Electrical Engineering, Hohai University, Changzhou, Jiangsu Province, 213200, China.
Abstract:
Momentum wheel balancing schemes for autonomous bicycles are limited in torque output, load capacity, and continuous-disturbance rejection. This paper presents a dual-rotor single-gimbal control moment gyroscope (SGCMG) stabilizer with dual-mode operation and doubled effective gyroscopic torque. The system is modeled via the Lagrangian method and linearized to a fourth-order state-space form. A fuzzy adaptive PID dual-loop cascade controller achieves the lowest tilt-angle overshoot (-0.05 rad vs. -0.09 rad for cascade PID) and zero steady-state error. Experiments on a 6.77 kg prototype demonstrate swing-up recovery from 8∘ within 7 s, stable balance under a 2 kg payload (maximum tilt deviation 0.17∘), convergence to ±0.2∘ after lateral disturbances, and curved motion at a 15∘ steering angle with tilt within ±0.6∘.
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