paper-with-me

Papers

Hybrid Tunable Magnet Actuator: Modeling and Design

2022-12-02 · W. B. Hoekwater, J. D. Wiersema1, S. H. HosseinNia

Reluctance actuators are preferred for high-precision applications. Due to resistive losses in the coils, the accuracy of this type of actuator will reduce in quasi-static operation mode within a vacuum environment. By using soft permanent magnets whose magnetization states are in-situ tuned, no constant power is needed to create a force and thereby the resistive losses will reduce. In this paper, a new tuning method is investigated in order to reduce the resistive losses. By using a history-dependent and non-linear hysteresis model, a more efficient tuning algorithm is designed. Besides this, the position accuracy and control simplicity of a variable reluctance tunable magnet actuator are improved by linearizing the non-linear force-flux relationship. This is achieved by using bias fluxes generated by hard permanent magnets.

📄 PDF Abstract BibTeX arXiv:2212.01242

Code (0)

등록된 구현이 없습니다.

Tasks

Position

Similar Papers 제목 키워드 기반

Tunable Magnets: modeling and validation for dynamic and precision applications

2022-09-30 · Silvan G. Viëtor, Jo W. Spronck, S. Hassan HosseinNia

Actuator self-heating limits the achievable force and can cause unwanted structural deformations. This is especially apparent in quasi-static actuation systems that require the actuator to maintain a stable position over…

Hybrid Dynamical Model for Reluctance Actuators Including Saturation, Hysteresis and Eddy Currents

2024-01-24 · Edgar Ramirez-Laboreo, Maurice G. L. Roes, Carlos Sagues

A novel hybrid dynamical model for single-coil, short-stroke reluctance actuators is presented in this paper. The model, which is partially based on the principles of magnetic equivalent circuits, includes the magnetic p…

Field-programmable dynamics in a soft magnetic actuator enabling true random number generation and reservoir computing

2025-11-28 · Eduardo Sergio Oliveros-Mata, Oleksandr V. Pylypovskyi, Eleonora Raimondo, Rico Illing 외 arxiv

Complex and even chaotic dynamics, though prevalent in many natural and engineered systems, has been largely avoided in the design of electromechanical systems due to concerns about wear and controlability. Here, we demo…

Time Series Prediction

An Actuator with Magnetic Restoration, Part I: Electromechanical Model and Identification

2023-12-07 · Sajjad Mohammadi, William R. Benner, James L. Kirtley, Jeffrey H. Lang

Electromechanical models are crucial in the design and control of motors and actuators. Modeling, identification, drive, and current control loop of a limited-rotation actuator with magnetic restoration is presented. New…

Friction

A Hybrid Transmitting and Reflecting Beyond Diagonal Reconfigurable Intelligent Surface with Independent Beam Control and Power Splitting

2025-04-13 · Zhaoyang Ming, Shanpu Shen, Junhui Rao, Zan Li 외

A hybrid transmitting and reflecting beyond diagonal reconfigurable intelligent surface (BD-RIS) design is proposed. Operating in the same aperture, frequency band and polarization, the proposed BD-RIS features independe…

Steering Control