A rehabilitation walking robot is a professional intelligent wearable device mainly applied in the functional recovery of patients suffering from stroke, spinal cord injury, hemiplegia and lower limb dysfunction. Adopting lightweight high-strength carbon fiber and skin-friendly breathable materials, it fits the hip, knee and ankle joints closely without interfering with normal gait movements such as standing, walking and stair climbing. Built-in high-precision inertial sensors and torque sensing modules collect real-time gait data, joint angles and balance information. The control system outputs adaptive auxiliary power to guide users to complete standardized walking training, correct abnormal gait and prevent secondary injuries caused by incorrect movement habits. It can automatically record training duration, gait symmetry and limb activity range, generating visual rehabilitation reports for doctors to adjust personalized training plans timely. Equipped with multi-layer safety mechanisms including anti-fall protection, emergency stop and torque limitation, it ensures stable and secure training indoors in rehabilitation centers and home scenarios. By repeating scientific gait training, this robot effectively restores patients’ lower limb muscle strength, improves walking balance and coordination, helps users gradually regain independent walking ability and reduces the long-term reliance on wheelchairs and caregivers.