Knežević, Mladen

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479ec9f9-c190-47bf-8fdf-065e31382ff7
  • Knežević, Mladen (2)
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Author's Bibliography

An open architecture control system for multi-axis wood CNC machining center

Živanović, Saša; Dimić, Zoran; Rakić, Aleksandar; Knežević, Mladen; Mitrović, Stefan

(Faculty of Mechanical Engineering University of Banja Luka, 2021)

TY  - CONF
AU  - Živanović, Saša
AU  - Dimić, Zoran
AU  - Rakić, Aleksandar
AU  - Knežević, Mladen
AU  - Mitrović, Stefan
PY  - 2021
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/4721
AB  - This paper presents an open architecture control system for multi‐axis wood computer numerical
control (CNC) milling machining centre, based on LinuxCNC. The wood CNC machining system is
supported by an equivalent virtual machine in a CAD/CAM environment, as well as in the control
system. Simulation within virtual environment is essential for multi‐axis machining, and the developed virtual machines are used for program verification and monitoring of the machining
process. The virtual machine in the programming system allows the verification of the program
before it’s sent to the actual machine, while the virtual machine in the control system represents the final verification of the program, as well as the process monitoring system. Configuration of the
control system and implementation of virtual machines will be shown, along with the conducted
machining experiments that ensued after the successful simulation on developed virtual machines.
PB  - Faculty of Mechanical Engineering University of Banja Luka
C3  - 15th International Conference on Accomplishments in Mechanical and Industrial Engineering DEMI 2021
T1  - An open architecture control system for multi-axis wood CNC machining center
EP  - 119
SP  - 113
UR  - https://hdl.handle.net/21.15107/rcub_machinery_4721
ER  - 
@conference{
author = "Živanović, Saša and Dimić, Zoran and Rakić, Aleksandar and Knežević, Mladen and Mitrović, Stefan",
year = "2021",
abstract = "This paper presents an open architecture control system for multi‐axis wood computer numerical
control (CNC) milling machining centre, based on LinuxCNC. The wood CNC machining system is
supported by an equivalent virtual machine in a CAD/CAM environment, as well as in the control
system. Simulation within virtual environment is essential for multi‐axis machining, and the developed virtual machines are used for program verification and monitoring of the machining
process. The virtual machine in the programming system allows the verification of the program
before it’s sent to the actual machine, while the virtual machine in the control system represents the final verification of the program, as well as the process monitoring system. Configuration of the
control system and implementation of virtual machines will be shown, along with the conducted
machining experiments that ensued after the successful simulation on developed virtual machines.",
publisher = "Faculty of Mechanical Engineering University of Banja Luka",
journal = "15th International Conference on Accomplishments in Mechanical and Industrial Engineering DEMI 2021",
title = "An open architecture control system for multi-axis wood CNC machining center",
pages = "119-113",
url = "https://hdl.handle.net/21.15107/rcub_machinery_4721"
}
Živanović, S., Dimić, Z., Rakić, A., Knežević, M.,& Mitrović, S.. (2021). An open architecture control system for multi-axis wood CNC machining center. in 15th International Conference on Accomplishments in Mechanical and Industrial Engineering DEMI 2021
Faculty of Mechanical Engineering University of Banja Luka., 113-119.
https://hdl.handle.net/21.15107/rcub_machinery_4721
Živanović S, Dimić Z, Rakić A, Knežević M, Mitrović S. An open architecture control system for multi-axis wood CNC machining center. in 15th International Conference on Accomplishments in Mechanical and Industrial Engineering DEMI 2021. 2021;:113-119.
https://hdl.handle.net/21.15107/rcub_machinery_4721 .
Živanović, Saša, Dimić, Zoran, Rakić, Aleksandar, Knežević, Mladen, Mitrović, Stefan, "An open architecture control system for multi-axis wood CNC machining center" in 15th International Conference on Accomplishments in Mechanical and Industrial Engineering DEMI 2021 (2021):113-119,
https://hdl.handle.net/21.15107/rcub_machinery_4721 .

Digital Twin Control of Multi-Axis Wood CNC Machining Center Based on LinuxCNC

Rakić, Aleksandar; Živanović, Saša; Dimić, Zoran; Knežević, Mladen

(North Carolina State Univ Dept Wood & Paper Sci, Raleigh, 2021)

TY  - JOUR
AU  - Rakić, Aleksandar
AU  - Živanović, Saša
AU  - Dimić, Zoran
AU  - Knežević, Mladen
PY  - 2021
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/3618
AB  - This paper presents an application of an open architecture control system implemented on a multi-axis wood computer numerical control milling machining center, as a digital twin control. The development of the digital twin control system was motivated by research and educational requirements, especially in the field of configuring a new control system by "virtual commissioning", enabling the validation of the developed controls, program verification, and analysis of the machining process and monitoring. The considered wood computer numerical control (CNC) machining system is supported by an equivalent virtual machine in a computer-aided design and computer-aided manufacturing (CAD/CAM) environment, as well as in the control system, as a digital twin. The configured virtual machines are used for the verification of the machining program and programming system via machining simulation, which is extremely important in multi-axis machining. Several test wood workpieces were machined to validate the effectiveness of the developed control system based on LinuxCNC.
PB  - North Carolina State Univ Dept Wood & Paper Sci, Raleigh
T2  - Bioresources
T1  - Digital Twin Control of Multi-Axis Wood CNC Machining Center Based on LinuxCNC
EP  - 1130
IS  - 1
SP  - 1115
VL  - 16
DO  - 10.15376/biores.16.1.1115-1130
ER  - 
@article{
author = "Rakić, Aleksandar and Živanović, Saša and Dimić, Zoran and Knežević, Mladen",
year = "2021",
abstract = "This paper presents an application of an open architecture control system implemented on a multi-axis wood computer numerical control milling machining center, as a digital twin control. The development of the digital twin control system was motivated by research and educational requirements, especially in the field of configuring a new control system by "virtual commissioning", enabling the validation of the developed controls, program verification, and analysis of the machining process and monitoring. The considered wood computer numerical control (CNC) machining system is supported by an equivalent virtual machine in a computer-aided design and computer-aided manufacturing (CAD/CAM) environment, as well as in the control system, as a digital twin. The configured virtual machines are used for the verification of the machining program and programming system via machining simulation, which is extremely important in multi-axis machining. Several test wood workpieces were machined to validate the effectiveness of the developed control system based on LinuxCNC.",
publisher = "North Carolina State Univ Dept Wood & Paper Sci, Raleigh",
journal = "Bioresources",
title = "Digital Twin Control of Multi-Axis Wood CNC Machining Center Based on LinuxCNC",
pages = "1130-1115",
number = "1",
volume = "16",
doi = "10.15376/biores.16.1.1115-1130"
}
Rakić, A., Živanović, S., Dimić, Z.,& Knežević, M.. (2021). Digital Twin Control of Multi-Axis Wood CNC Machining Center Based on LinuxCNC. in Bioresources
North Carolina State Univ Dept Wood & Paper Sci, Raleigh., 16(1), 1115-1130.
https://doi.org/10.15376/biores.16.1.1115-1130
Rakić A, Živanović S, Dimić Z, Knežević M. Digital Twin Control of Multi-Axis Wood CNC Machining Center Based on LinuxCNC. in Bioresources. 2021;16(1):1115-1130.
doi:10.15376/biores.16.1.1115-1130 .
Rakić, Aleksandar, Živanović, Saša, Dimić, Zoran, Knežević, Mladen, "Digital Twin Control of Multi-Axis Wood CNC Machining Center Based on LinuxCNC" in Bioresources, 16, no. 1 (2021):1115-1130,
https://doi.org/10.15376/biores.16.1.1115-1130 . .
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