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2023-11-12 12:00
Open Source License Obligations Checklists even better nowImport the checklists to other tools, create context diffs and merged lists
2022-07-11 12:00
Call for participation in phase #4 of Open Source OPC UA open62541 support projectLetter of Intent fulfills wish list from recent survey
2022-01-13 12:00
Phase #3 of OSADL project on OPC UA PubSub over TSN successfully completedAnother important milestone on the way to interoperable Open Source real-time Ethernet has been reached
2021-02-09 12:00
Open Source OPC UA PubSub over TSN project phase #3 launchedLetter of Intent with call for participation is now available |
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17th Real Time Linux Workshop, October 21 to 22, 2015 at the Virtual Vehicle Research Center, Graz, Austria
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RTAI based real time Positioning and Tracking controller for GMRT Servo System
Thiyagarajan Beeman, National Centre for Radio Astrophysics, Pune, India
Shailendra Bagde, National Centre for Radio Astrophysics, Pune, India
Dr. Bhal Chandra Joshi, National Centre for Radio Astrophysics, Pune, India
The Giant Metrewave Radio Telescope (GMRT), located near Pune, India, consisting of 30 fully steerable parabolic dishes of 45m diameter each, provides the facility for frontline research in radio astronomy. The GMRT servo system is a dual drive closed loop position feedback control system for accurately tracking and positioning of the GMRT radio telescopes to celestial objects. The next generation digital controller for GMRT antennas is built with more powerful and highly sophisticated state-of-the-art industry standard PC104 Single Board Computer (PC104 SBC) with Linux-Real Time Application Interface (RTAI) operating system. In this paper, we present the design details of developed RTAI based hard real time embedded system for GMRT antennas and its significance in control of a radio telescope as well as we present the various hardware features of the GMRT servo system, architecture of the antenna control software and additional advantages of the upgraded servo system. We also present various performance indices of RTAI system, performance of the servo system in terms of tracking and positioning accuracy.