The biped robot with heterogeneous legs (BRHL) greatly facilitates the development of intelligent lower-limb prosthesis (ILLP). In the BRHL, the remaining leg of the amputee is simulated by an artificial leg, which provides the bionic leg with the precise gait following trajectory. Therefore, the artificial leg must closely mimic the features of the human leg. After analyzing the motion mechanism of the human knee, this paper designs a four-link bionic knee in light of the coexistence of rolling and sliding between the femur, the meniscus and the tibia. Drawing on the driving mechanism of leg muscles, two pneumatic artificial muscles (PAMs) were adopted to serve as the extensor and flexor muscles on the thigh. The two PAMs move in opposite ...
Human upright locomotion emerged about 6 million years ago. It is achieved by a complex interaction ...
Recent advances in robotics technology provide great support for robotic leg prostheses to realize f...
© Springer International Publishing AG, part of Springer Nature 2018. This paper details the design,...
A biped robot with heterogeneous legs (BRHL) is proposed to provide an ideal test-bed for intelligen...
ABSTRACT: To provide an ideal test-base for the development of an intelligent bionic leg, a new patt...
Intelligent bionic leg (IBL) is important for above-knee amputees. Biped robot with heterogeneous le...
Abstract: Intelligent bionic leg (IBL) is important for above-knee amputees. Biped robot with hetero...
Intelligent bionic leg (IBL) is an advanced prosthesis which can maximum functionally simulate and a...
Biped Robot with Heterogeneous Legs (BRHL) is a novel robot model, which consists of an artificial l...
Biped Robot with Heterogeneous Legs (BRHL) is a novel robot model, which consists of an artificial l...
This paper discusses how a biped robot with heterogeneous legs imitates a person\u27s walking from g...
This paper discusses how a biped robot with heterogeneous legs imitates a person's walking from ...
This paper discusses how a biped robot with heterogeneous legs imitates a person's walking from ...
Human balance and locomotion control is highly complex and not well understood. To understand how th...
Recent advances in robotics technology provide great support for robotic leg prostheses to realize f...
Human upright locomotion emerged about 6 million years ago. It is achieved by a complex interaction ...
Recent advances in robotics technology provide great support for robotic leg prostheses to realize f...
© Springer International Publishing AG, part of Springer Nature 2018. This paper details the design,...
A biped robot with heterogeneous legs (BRHL) is proposed to provide an ideal test-bed for intelligen...
ABSTRACT: To provide an ideal test-base for the development of an intelligent bionic leg, a new patt...
Intelligent bionic leg (IBL) is important for above-knee amputees. Biped robot with heterogeneous le...
Abstract: Intelligent bionic leg (IBL) is important for above-knee amputees. Biped robot with hetero...
Intelligent bionic leg (IBL) is an advanced prosthesis which can maximum functionally simulate and a...
Biped Robot with Heterogeneous Legs (BRHL) is a novel robot model, which consists of an artificial l...
Biped Robot with Heterogeneous Legs (BRHL) is a novel robot model, which consists of an artificial l...
This paper discusses how a biped robot with heterogeneous legs imitates a person\u27s walking from g...
This paper discusses how a biped robot with heterogeneous legs imitates a person's walking from ...
This paper discusses how a biped robot with heterogeneous legs imitates a person's walking from ...
Human balance and locomotion control is highly complex and not well understood. To understand how th...
Recent advances in robotics technology provide great support for robotic leg prostheses to realize f...
Human upright locomotion emerged about 6 million years ago. It is achieved by a complex interaction ...
Recent advances in robotics technology provide great support for robotic leg prostheses to realize f...
© Springer International Publishing AG, part of Springer Nature 2018. This paper details the design,...