Online Delay Estimation and Adaptive Compensation in Wireless Networked System: An Embedded Control Design

Rajkumar, Santosh Mohan and Chakraborty, Sayan and Dey, Rajeeb and et al, . (2020) Online Delay Estimation and Adaptive Compensation in Wireless Networked System: An Embedded Control Design. International Journal of Control, Automation and Systems, 18 (4). pp. 856-866. ISSN 1598-6446

Full text not available from this repository. (Request a copy)

Abstract

In the present work, an embedded PI controller is designed for speed regulation of DC servomotor over a wireless network. The embedded controller integrates PI controller with a proposed time-delay estimator and an adaptive digital Smith predictor for its real time operation, which is the novelty of the work. The real time or rather online operation of the developed embedded controller over wireless network is possible mainly due to the contributions in terms of proposing a new empirical formula for time-delay estimation, viable approximation of time-delay, discretization scheme in developing the proposed adaptive Smith predictor. The proposed embedded design validates that the deterioration of control performance due to random network-induced delay are mitigated in real time. The embedded controller is designed and tested for a short-range of 100 meters, and wireless technology chosen is suitable for biomedical applications.

[error in script]
IITH Creators:
IITH CreatorsORCiD
Item Type: Article
Uncontrolled Keywords: Adaptive Smith predictor; delay estimation; embedded control system; wireless network control system (WNCS)
Subjects: Electrical Engineering
Divisions: Department of Electrical Engineering
Depositing User: Team Library
Date Deposited: 04 Dec 2019 05:10
Last Modified: 14 Nov 2022 10:47
URI: http://raiithold.iith.ac.in/id/eprint/7107
Publisher URL: http://doi.org/10.1007/s12555-018-0612-x
OA policy: https://v2.sherpa.ac.uk/id/publication/13406
Related URLs:

Actions (login required)

View Item View Item
Statistics for RAIITH ePrint 7107 Statistics for this ePrint Item