Advanced X-by-Wire Technologies in Design, Control and Measurement for Vehicular Electrified Chassis

Advanced X-by-wire technologies for vehicular electrified chassis play an essential role in the development of new energy intelligent vehicles, which is the inevitable choice for intelligent vehicles in the future. This technology is involved in mechanical engineering, electronic and electrical engi...

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Format: eBook
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2023
Subjects:
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Online Access:Open Access: DOAB: description of the publication
Open Access: DOAB, download the publication
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720 1 |a Li, Yong  |4 oth 
720 1 |a Lu, Yang  |4 edt 
720 1 |a Lu, Yang  |4 oth 
720 1 |a Qin, Yechen  |4 edt 
720 1 |a Qin, Yechen  |4 oth 
720 1 |a Xu, Xing  |4 edt 
720 1 |a Xu, Xing  |4 oth 
720 1 |a Zhang, Lin  |4 edt 
720 1 |a Zhang, Lin  |4 oth 
245 0 0 |a Advanced X-by-Wire Technologies in Design, Control and Measurement for Vehicular Electrified Chassis 
260 |a Basel  |b MDPI - Multidisciplinary Digital Publishing Institute  |c 2023 
300 |a 1 online resource (268 p.) 
336 |a text  |b txt  |2 rdacontent 
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520 |a Advanced X-by-wire technologies for vehicular electrified chassis play an essential role in the development of new energy intelligent vehicles, which is the inevitable choice for intelligent vehicles in the future. This technology is involved in mechanical engineering, electronic and electrical engineering, computer technology, control engineering, signal processing, and artificial intelligence. Advanced electrified chassis control technology transmits control signals through cables and acts directly on the actuator to implement corresponding actions. The application of X-by-wire technologies for vehicular electrified chassis has changed the complex mechanical connections among actuators and hydraulic and pneumatic equipment in the past, greatly promoting energy efficiency, integration, and intelligence. This reprint focuses on advanced X-by-wire technologies in strong reliability design, modeling, integration control, thermal management, energy management, fault diagnosis, and fault-tolerant control with the vehicular electrified chassis. Therefore, the aim of this reprint was to solicit recent advanced X-by-wire technologies for vehicular electrified chassis. 
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546 |a English 
650 7 |a History of engineering & technology  |2 bicssc 
650 7 |a Technology: general issues  |2 bicssc 
653 |a acceleration slip regulation 
653 |a active collision avoidance 
653 |a active suspension 
653 |a additional roll moment 
653 |a autonomous driving 
653 |a autonomous vehicle 
653 |a blackboard model 
653 |a braking stability 
653 |a bridge network 
653 |a decoupling control 
653 |a distributed drive electric vehicles 
653 |a distributed driving electric vehicles 
653 |a electric vehicles 
653 |a electronically controlled air suspension 
653 |a energy consumption optimization 
653 |a energy efficiency 
653 |a energy recovery 
653 |a extended Kalman filter bank 
653 |a fault diagnosis 
653 |a fault-tolerant control 
653 |a four in-wheel motor drive electric vehicle 
653 |a four-wheel drive 
653 |a fractional-order electrical network 
653 |a fuzzy neural network 
653 |a genetic algorithm 
653 |a hierarchical control 
653 |a high frequency (HF) signal injection method 
653 |a high-order impedance 
653 |a I/F control 
653 |a inerter 
653 |a intervention and exit mechanisms 
653 |a load transfer rate 
653 |a MATLAB/Simulink simulation 
653 |a mechatronic inerter 
653 |a mechatronic system 
653 |a model predictive control 
653 |a model reference control 
653 |a model-based techniques 
653 |a motor efficiency 
653 |a multi-agent coordinated control system 
653 |a n/a 
653 |a non-singular fast terminal sliding mode control 
653 |a nonlinear model predictive control 
653 |a obstacle avoidance path tracking 
653 |a optimal design 
653 |a particle swarm algorithm 
653 |a path tracking control 
653 |a permanent magnet synchronous machine (PMSM) 
653 |a PID control 
653 |a planning algorithm 
653 |a policy gradient 
653 |a polynomial path planning 
653 |a position sensorless compound control 
653 |a real vehicle test 
653 |a real-time 
653 |a regenerative braking 
653 |a reinforcement learning 
653 |a seat suspension 
653 |a solenoid valve 
653 |a structure-immittance approach 
653 |a suspension 
653 |a torque allocation 
653 |a torque distribution 
653 |a trajectory tracking control 
653 |a variable Gaussian safety field 
653 |a vehicle 
653 |a x-by-wire vehicle 
793 0 |a DOAB Library. 
856 4 0 |u https://directory.doabooks.org/handle/20.500.12854/112453  |7 0  |z Open Access: DOAB: description of the publication 
856 4 0 |u https://mdpi.com/books/pdfview/book/7566  |7 0  |z Open Access: DOAB, download the publication