paper-with-me

Papers

Generalizing Hybrid Integrator-Gain Systems Using Fractional Calculus

2022-04-28 · S. Ali Hosseini, Mohammad Saleh Tavazoei, Luke F. van Eijk, S. Hassan HosseinNia

The Hybrid Integral Gain Systems (HIGS) has recently gained a lot of attention in the control of precision motion systems. HIGS is a nonlinear low pass filter with a 52 degree phase advantage over its linear counterpart. This property allows us to avoid the limitations typically associated with linear controllers like the waterbed effect and bode's phase gain relation. In this paper, we generalize HIGS via replacing the involved integer order integrator with a fractional order one to adapt the phase lead from 0 degree (linear low pass filter) to 52 degree (HIGS). To analyze this filter in the frequency domain, the describing function of the proposed filter, i.e., the fractional-order HIGS, is obtained using the Fourier expansion of the output signal. In addition, this generalized HIGS is implemented in a PID structure controlling a double integrator system to validate the performance of the proposed filter in the time domain, in which changing the fractional variable from zero to one, the output varies from the response of a nonlinear control system to a linear one.

📄 PDF Abstract BibTeX arXiv:2204.13544

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Digital control of negative imaginary systems: a discrete-time hybrid integrator-gain system approach

2024-03-24 · Kanghong Shi, Ian R. Petersen

A hybrid integrator-gain system (HIGS) is a control element that switches between an integrator and a gain, which overcomes some inherent limitations of linear controllers. In this paper, we consider using discrete-time …

Hybrid integrator-gain system based integral resonant controllers for negative imaginary systems

2024-03-22 · Kanghong Shi, Ian R. Petersen

We introduce a hybrid control system called a hybrid integrator-gain system (HIGS) based integral resonant controller (IRC) to stabilize negative imaginary (NI) systems. A HIGS-based IRC has a similar structure to an IRC…

Negative Imaginary Control Using Hybrid Integrator-Gain Systems: Application to MEMS Nanopositioner

2023-10-24 · Kanghong Shi, Nastaran Nikooienejad, Ian R. Petersen, S. O. Reza Moheimani

In this paper, we propose a new approach to address the control problem for negative imaginary (NI) systems by using hybrid integrator-gain systems (HIGS). We investigate the single HIGS of its original form and its two …

Impulse Response Invariant Discretization of Complex Fractional Order Integrator

2019-11-18

When the order of an integrator is a complex number, the integrator is called a complex fractional order integrator (CFOI). The impulse response invariant discretization (IRID) method is proposed to approximately discret…

Filtering in Projection-based Integrators for Improved Phase Characteristics

2024-08-30 · Hoang Chu, S. J. A. M van den Eijnden, M. F. Heertjes, W. P. M. H. Heemels

Projection-based integrators are effectively employed in high-precision systems with growing industrial success. By utilizing a projection operator, the resulting projection-based integrator keeps its input-output pair w…