Proposed synchronous electric motor simulation with built-in permanent magnets for robotic systems

被引:0
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作者
Hani Attar
Amer Tahseen Abu-Jassar
Vyacheslav Lyashenko
Ahmad Al-qerem
Svitlana Sotnik
Naif Alharbi
Ahmed A. A. Solyman
机构
[1] Zarqa University,Department of Energy Engineering
[2] Ajloun National University,Faculty of Computer Science and Information Technology
[3] Kharkiv National University of Radio Electronics,Department of Media Systems and Technology
[4] Zarqa University,Department of Computer Science
[5] Kharkiv National University of Radio Electronics,Department of Computer
[6] College of Engineering in Al-Qunfudhah,Integrated Technologies, Automation, and Mechatronics
[7] Umm Al-Qura University,Department of Industrial Engineering
[8] Nişantaşı University,Department of Electrical and Electronics Engineering, Faculty of Engineering and Architecture
来源
SN Applied Sciences | 2023年 / 5卷
关键词
Industrial robot; Motor; Torque simulation; Durability; Permanent magnets; Electrical Magnetic Force (EMF);
D O I
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学科分类号
摘要
Choosing the proper engine that fits the desired application is a crucial design factor in robotics. Accordingly, this paper compares different types of engines for other Industrial robots (IR) and proposes to put practical criteria based on the mechanical design and its application. It starts from describing the IR choice to explaining the synchronous motor with permanent magnets as a base of the motor choice. Particular attention is paid to the consideration of components and their purpose supported by the creation of the subsequent drawings. SolidWorks system was implemented to obtain expressive and high-quality graphics and three dimensions design. Moreover, the entire Electrical Magnetic Force (EMF) was simulated using the method of variational parameterization. Accordingly, a developed synchronous motor with a built-in permanent magnet is proposed, which is supported by 3D design graphics to evaluate the deformation and margin of the housing and motor shaft safety.The obtained results provide a valuable study for the robotic engines' characteristics, such as the engine's strength, torque, power, and speed. An example of the comparison results is testing the synchronous motor, which confirms that the permanent magnets built-on synchronous motor is most recommended for the lightweight robots designed to work under average load weight. More results were performed to compare the proposed design with the robotics world's leading companies, showing that the developed proposed design has significant characteristics that outperform traditional motors.
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