The Spring-Loaded Inverted Pendulum (SLIP) model has long been established as an effective and accurate descriptive model for running animals of widely differing sizes and morphologies, while also serving as a basis for several hopping robot designs. Further research on this model led to the discovery of several analytic approximations to its normally nonintegrable dynamics. However, these approximations mostly focus on steady-state running with symmetric trajectories due to their linearization of gravitational effects, an assumption that is quickly violated for locomotion on more complex terrain wherein transient, non-symmetric trajectories dominate. In this paper, we introduce a novel gravity correction scheme that extends on one of the m...
Running and hopping follow similar patterns for different animals, independent of the number of legs...
Cataloged from PDF version of article.Widely accepted utility of simple spring-mass models for runni...
Spring-like leg behavior was found in the global dynamics of human and animal running in sagittal pl...
The Spring-Loaded Inverted Pendulum (SLIP) model has long been established as an effective and accur...
Ankara : The Department of Electrical and Electronics Engineering and the Institute of Engineering a...
The spring-loaded inverted pendulum (SLIP), or monopedal hopper, is an archetypal model for running ...
The spring-loaded inverted pendulum (SLIP), or monopedal hopper, is an archetypal model for running ...
Abstract. The spring-loaded inverted pendulum (SLIP), or monopedal hopper, is an archetypal model fo...
Spring-loaded inverted pendulum (SLIP) template (and its various derivatives) could be considered as...
This paper introduces an accurate yet analytically simple approximation to the stance dynamics of th...
The spring loaded inverted pendulum (SLIP) has emerged as the right template for studying dynamic lo...
The spring loaded inverted pendulum (SLIP) has emerged as the right template for studying dynamic lo...
Abstract — The Spring-Loaded Inverted Pendulum (SLIP) is considered the simplest model to effectivel...
The Spring-Loaded Inverted Pendulum (SLIP) model has been established both as a very accurate descri...
Running and hopping follow similar patterns for different animals, independent of the number of legs...
Running and hopping follow similar patterns for different animals, independent of the number of legs...
Cataloged from PDF version of article.Widely accepted utility of simple spring-mass models for runni...
Spring-like leg behavior was found in the global dynamics of human and animal running in sagittal pl...
The Spring-Loaded Inverted Pendulum (SLIP) model has long been established as an effective and accur...
Ankara : The Department of Electrical and Electronics Engineering and the Institute of Engineering a...
The spring-loaded inverted pendulum (SLIP), or monopedal hopper, is an archetypal model for running ...
The spring-loaded inverted pendulum (SLIP), or monopedal hopper, is an archetypal model for running ...
Abstract. The spring-loaded inverted pendulum (SLIP), or monopedal hopper, is an archetypal model fo...
Spring-loaded inverted pendulum (SLIP) template (and its various derivatives) could be considered as...
This paper introduces an accurate yet analytically simple approximation to the stance dynamics of th...
The spring loaded inverted pendulum (SLIP) has emerged as the right template for studying dynamic lo...
The spring loaded inverted pendulum (SLIP) has emerged as the right template for studying dynamic lo...
Abstract — The Spring-Loaded Inverted Pendulum (SLIP) is considered the simplest model to effectivel...
The Spring-Loaded Inverted Pendulum (SLIP) model has been established both as a very accurate descri...
Running and hopping follow similar patterns for different animals, independent of the number of legs...
Running and hopping follow similar patterns for different animals, independent of the number of legs...
Cataloged from PDF version of article.Widely accepted utility of simple spring-mass models for runni...
Spring-like leg behavior was found in the global dynamics of human and animal running in sagittal pl...