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Ivan I. Borisov

9 accepted papers

2026

Task-Aware Actuator Parameter Allocation for Multibody Robots

RA-L 2026

Legged robots demand actuator parameter sets that reconcile conflicting requirements such as high torque density, low impedance, responsiveness, and energy efficiency. This paper presents a taskaware codesign framework that jointly optimizes actuator parameters and motion for humanoids. An outer loo

Cited by 0SourcecodeScholar
2025

Computational Design of Closed Linkages For Robotic Limbs

IROS 2025

Legged robots require low-inertia limbs capable of carrying a high payload. The design of such limbs poses challenges in integrating optimal kinematic structures with practical design considerations. In the search for optimal design parameters, advantages of optimization algorithms can be applied. T

Cited by 0SourcecodeScholar
2024

Parametric Synthesis of Compliant Joints for Impact-Robust Shaftless Leg Mechanisms

IROS 2024poster

This paper describes a novel parametric optimization procedure for three flexure cross hinges (TFCH) integrated into multi-link leg mechanisms with closed-loop kinematics. Despite advantages such as compliance, no need for joint lubrication, light weight and cost-efficiency, such shaftless mechanism…

Cited by 0SourceScholar
2024

Synergizing Morphological Computation and Generative Design: Automatic Synthesis of Tendon-Driven Grippers

IROS 2024poster

The design process of robotic systems is a complex journey that involves multiple phases. Throughout this process, the aim is to tackle various criteria simultaneously, even though they often contradict each other. The ultimate goal is to uncover the optimal solution that resolves these conflicting…

Cited by 0SourceScholar
2023

Computational Design of Closed-Chain Linkages: Hopping Robot Driven by Morphological Computation

ICRA 2023poster

The main advantages of legged robots over wheeled ones are their abilities to traverse on uneven terrain due to the use of intermittent contacts and an ability to shift the center of mass relative to the contact location. A robot's leg design can be implemented by using an open-chain mechanism actua…

Cited by 8SourceScholar
2023

Computational Design of Closed-Chain Linkages: Respawn Algorithm for Generative Design

IROS 2023poster

Designing robots is a multiphase process aimed at solving a multi-criteria optimization problem to find the best possible detailed design. Generative design (GD) aims to accelerate the design process compared to manual design, since GD allows exploring and exploiting the vast design space more effic…

Cited by 1SourceScholar
2022

Reconfigurable Underactuated Adaptive Gripper Designed by Morphological Computation

ICRA 2022poster

Anthropomorphic robotic grippers are required for robots, prostheses, and orthosis to enable manipulation of a priori unknown and variable-shape objects. It has to meet a wide range of sometimes contradictory requirements in terms of adaptivity, dexterity, high payload to weight ratio, robustness, a…

Cited by 18SourceScholar
2021

Computational Design of Reconfigurable Underactuated Linkages for Adaptive Grippers

IROS 2021poster

We present an optimization-based structural-parametric synthesis method for reconfigurable closed-chain underactuated linkages for robotic systems that physically interact with the environment with an emphasis on adaptive grasping. The key idea is to implement morphological computation concepts to k…

Cited by 15SourceScholar
2019

Study on Elastic Elements Allocation for Energy-Efficient Robotic Cheetah Leg

IROS 2019poster

The biomimetic approach in robotics is promising: nature has found many good solutions through millions of years of evolution. However, creating a design that enables fast and energy-efficient locomotion remains a major challenge. This paper focuses on the development of a full leg mechanism for a f…

Cited by 13SourceScholar