A powered walking exoskeleton is an active wearable robotic system driven by servo motors, designed to provide dynamic walking assistance for people with lower limb dysfunction, the elderly and field workers. Made from lightweight high-rigidity carbon fiber and comfortable breathable materials, it attaches to the hips, thighs, knees and calves without restricting natural gait movements. Equipped with multiple high-precision sensors, it captures real-time human motion intentions, joint angles and body balance data, then drives servo joints to output adaptive auxiliary torque for standing, walking, turning and stair climbing. For rehabilitation patients, it guides standardized gait training to correct walking deformities, restore muscle strength and improve balance coordination. For industrial and outdoor users, it shares lower limb loads during long-distance walking and heavy carrying to relieve fatigue and prevent joint injuries. The device supports adjustable wearing size and flexible parameter setting, with built-in emergency stop, anti-fall early warning and overload protection functions to ensure safe operation indoors and outdoors. Widely used in medical rehabilitation, logistics handling, field rescue and elderly care scenarios, the powered walking exoskeleton helps users regain independent mobility, reduces physical burden and greatly improves the quality of life and work efficiency.