← Search

Harsimran Singh

15 accepted papers

2026

Enhancing the Force Transparency of Time Domain Passivity Approach: Prescient Energy Reflection

RA-L 2026

The Time Domain Passivity Approach (TDPA) was developed to guarantee passivity while avoiding conservative constant controller parametrization. For this sake, the TDPA applies adaptive damping to dissipate excessive energy resulting from communication delay in bilateral teleoperation setups. Despite

Cited by 0SourceScholar
2025

Enhancing Shared Autonomy in Teleoperation Under Network Delay: Transparency- and Confidence-Aware Arbitration

RA-L 2025

Shared autonomy bridges human expertise with machine intelligence, yet existing approaches often overlook the impact of teleoperation delays. To address this gap, we propose a novel shared autonomy approach that enables robots to gradually learn from teleoperated demonstrations while adapting to net

Cited by 0SourceScholar
2024

Extension of the Deflection-Domain Passivity Approach for Variable Stiffnesses to SO(3)

RA-L 2024

Recently, the deflection-domain passivity approach (DDPA) was introduced which does not control a system?s energetic behavior over time but over the deflection of the coupling controller?s virtual spring. So far, it has been applied to guarantee passivity in variable stiffness systems and for chatte

Cited by 2SourceScholar
2022

Deflection-Domain Passivity Control of Variable Stiffnesses Based on Potential Energy Reference

RA-L 2022

With emerging capabilities, robots will advance gradually into human environments in the near future. Thereby, safety and robustness is currently tackled through intrinsically soft robotics or variable impedances, mainly stiffnesses. In tele-operation, for instance, the control stiffness can be adap

Cited by 11SourceScholar
2022

Virtual Inertia as an Energy Dissipation Element for Haptic Interfaces

RA-L 2022

Adding virtual damping to dissipate energy has been a major tool for designing stable haptic interfaces in most passivity-based approaches. However, virtual damping is known to dissipate a limited amount of energy. It even generates energy during high-velocity interaction because of the digitization

Cited by 2SourceScholar
2021

Position Synchronization Through the Energy-Reflection Based Time Domain Passivity Approach in Position-Position Architectures

RA-L 2021

Position synchronization is a primary control challenge in the delayed coupling of robotic systems. While in tele-operation, the interaction force of the robot is often the preferred feedback for high degrees of transparency, positions are exchanged in the coupling of autonomous systems for improved

Cited by 4SourceScholar
2021

Stabilization of User-Defined Feedback Controllers in Teleoperation With Passive Coupling Reference

RA-L 2021

Ensuring stability in time-delayed teleoperation can be difficult in some cases where the feedback forces need to be modified as defined by the user, to increase transparency. In the present letter, we propose an approach to ensure stability of any feedback controller selected by the user by conside

Cited by 8SourceScholar
2020

Proxy-Based Approach for Position Synchronization of Delayed Robot Coupling Without Sacrificing Performance

RA-L 2020

The application of the position-position architecture for enabling position synchronization of two robotic agents has been proven effective in the fields of telemanipulation and rendezvous of autonomous vehicles. Nevertheless, the approaches presented to this date with the purpose of rendering the p

Cited by 13SourceScholar
2020

Successive Stiffness Increment and Time Domain Passivity Approach for Stable and High Bandwidth Control of Series Elastic Actuator

ICRA 2020poster

For safe human-robot interaction, various type of flexible manipulators have been developed. Especially series elastic actuator (SEA) based manipulators have been getting huge attention since the elastic element of SEA prevents people from injury when undesirable collision happens. Moreover, it impr…

Cited by 4SourceScholar
2020

The 6-DoF Implementation of the Energy-Reflection Based Time Domain Passivity Approach With Preservation of Physical Coupling Behavior

RA-L 2020

Instability due to delayed communication is one of the main challenges in the coupling of autonomous robots but also in teleoperation with applications reaching from space to tele-healthcare scenarios. The Time Domain Passivity Approach assures stability despite delay and has already been validated

Cited by 9SourceScholar
2020

Whole-Body Bilateral Teleoperation of a Redundant Aerial Manipulator

ICRA 2020poster

Attaching a robotic manipulator to a flying base allows for significant improvements in the reachability and versatility of manipulation tasks. In order to explore such systems while taking advantage of human capabilities in terms of perception and cognition, bilateral teleoperation arises as a reas…

Cited by 25SourceScholar
2019

Enhancing the Force Transparency of Time Domain Passivity Approach: Observer-Based Gradient Controller

ICRA 2019poster

Passivity has been the most often used constraint for the stable controller design of bilateral teleoperation systems. Especially, Time Domain Passivity Approach (TDPA) has been used in many applications since it has been known as one of the least conservative passivity-based approaches. Although TD…

Cited by 20SourceScholar
2018

Enhancing the Command-Following Bandwidth for Transparent Bilateral Teleoperation

IROS 2018poster

Enhancing transparency of a teleoperation system by increasing the command-following bandwidth has not received lots of attention so far. This is considered a challenging task since in a teleoperation system the command-following bandwidth of the slave robot motion controller cannot be increased wit…

Cited by 4SourceScholar
2018

Smoother Position-Drift Compensation for Time Domain Passivity Approach Based Teleoperation

IROS 2018poster

Despite being one of the most robust methods in bilateral teleoperation, Time Domain Passivity Approach (TDPA)presents the drawback of accumulating position drift between master and slave devices. The lack of position synchronization poses an obstacle to the performance of teleoperation and may prev…

Cited by 29SourceScholar
2015

Passively adjustable gear based on twisted string actuator: Concept, model and evaluation

ICRA 2015poster

Actuators with adjustable transmission ratios are required in a variety of robotics and automation applications, spanning from human assistive devices and mobile robots to general manipulators. Most existing self-adjustable actuators are bulky and mechanically complex, which often makes their implem…

Cited by 15SourceScholar