wire system
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2022 ◽  
Vol 169 ◽  
pp. 108741
Author(s):  
Xiutian Liang ◽  
Linfeng Zhao ◽  
Qidong Wang ◽  
Wuwei Chen ◽  
Guang Xia ◽  
...  

2022 ◽  
pp. 61-70
Author(s):  
Souvik Das ◽  
Agniv Sarkar ◽  
O. B. Krishna ◽  
J. Maiti
Keyword(s):  

Energies ◽  
2021 ◽  
Vol 14 (23) ◽  
pp. 8039
Author(s):  
Aws Khalil ◽  
Ahmed Abdelhamed ◽  
Girma Tewolde ◽  
Jaerock Kwon

For autonomous driving research, using a scaled vehicle platform is a viable alternative compared to a full-scale vehicle. However, using embedded solutions such as small robotic platforms with differential driving or radio-controlled (RC) car-based platforms can be limiting on, for example, sensor package restrictions or computing challenges. Furthermore, for a given controller, specialized expertise and abilities are necessary. To address such problems, this paper proposes a feasible solution, the Ridon vehicle, which is a spacious ride-on automobile with high-driving electric power and a custom-designed drive-by-wire system powered by a full-scale machine-learning-ready computer. The major objective of this paper is to provide a thorough and appropriate method for constructing a cost-effective platform with a drive-by-wire system and sensor packages so that machine-learning-based algorithms can be tested and deployed on a scaled vehicle. The proposed platform employs a modular and hierarchical software architecture, with microcontroller programs handling the low-level motor controls and a graphics processing unit (GPU)-powered laptop computer processing the higher and more sophisticated algorithms. The Ridon vehicle platform is validated by employing it in a deep-learning-based behavioral cloning study. The suggested platform’s affordability and adaptability would benefit broader research and the education community.


2021 ◽  
Vol 172 (0) ◽  
pp. 121-130
Author(s):  
Magdy R. Roman ◽  
Sayed M. Shaaban ◽  
Mohamed G. Rabie ◽  
Mohamed H. Aly

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