When developing a robot, design iterations in the physical world are necessary, even though they are often costly and not systematic. Here, we present an automated iterative design process without using modeling or simulation, which we refer to as “model-free design optimization” based on Bayesian optimization. This letter particularly focuses on the cooptimization of morphology and controller, by using a mechanism to balance parameter specific costs (i.e., morphology samplings are more expensive than control ones) for effective and efficient design optimization processes. A hopping robot was employed for a feasibility analysis of the proposed optimization method, in which minimalistic two-dimensional and four-dimensional design optimizatio...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Robot manufacturers, like many other manufacturers, are experiencing increasing competition in a glo...
Robotics has the potential to be one of the most revolutionary technologies in human history. The im...
Conventionally, robot morphologies are developed through simulations and calculations, and different...
Conventionally, robot morphologies are developed through simulations and calculations, and different...
Automatic design is a promising approach to the design of control software for robot swarms. In an a...
To improve a robot’s performance at a given task, or to respond to changing requirements, shape adap...
© 2019 IEEE. Recent advances in 3D printing and manufacturing of miniaturized robotic hardware and c...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Nature demonstrates an incredible diversity, capability, and complexity of life, with organisms that...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Over the last decade, various mobile robots have been developed and widely used in myriad sectors. H...
This paper presents a method of optimizing the design of robotic manipulators using a novel kinemati...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
<div><p>Artificial evolution of physical systems is a stochastic optimization method in which physic...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Robot manufacturers, like many other manufacturers, are experiencing increasing competition in a glo...
Robotics has the potential to be one of the most revolutionary technologies in human history. The im...
Conventionally, robot morphologies are developed through simulations and calculations, and different...
Conventionally, robot morphologies are developed through simulations and calculations, and different...
Automatic design is a promising approach to the design of control software for robot swarms. In an a...
To improve a robot’s performance at a given task, or to respond to changing requirements, shape adap...
© 2019 IEEE. Recent advances in 3D printing and manufacturing of miniaturized robotic hardware and c...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Nature demonstrates an incredible diversity, capability, and complexity of life, with organisms that...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Over the last decade, various mobile robots have been developed and widely used in myriad sectors. H...
This paper presents a method of optimizing the design of robotic manipulators using a novel kinemati...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
<div><p>Artificial evolution of physical systems is a stochastic optimization method in which physic...
Artificial evolution of physical systems is a stochastic optimization method in which physical machi...
Robot manufacturers, like many other manufacturers, are experiencing increasing competition in a glo...
Robotics has the potential to be one of the most revolutionary technologies in human history. The im...