
Time‐domain resonant characteristics between the disturbances and the RS422 communication signals in Tesla pulse driver, and analysis on the caused RS422 communication interference
Author(s) -
Zhang Yu,
Cheng Jie,
Su Jiancang,
Zheng Lei,
Qiu Xudong,
Shang Wei
Publication year - 2020
Publication title -
iet science, measurement and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.418
H-Index - 49
eISSN - 1751-8830
pISSN - 1751-8822
DOI - 10.1049/iet-smt.2019.0498
Subject(s) - time domain , electromagnetic interference , electronic engineering , interference (communication) , emi , electromagnetic compatibility , communications system , signal (programming language) , frequency domain , computer science , pulse (music) , electrical engineering , engineering , telecommunications , voltage , channel (broadcasting) , computer vision , programming language
The communication circuit network is widely employed for signal transmission in high‐voltage pulse driver system, for commanding, controlling, measurement & communication. The electromagnetic compatibility of the communication circuit network mainly decides the stability and reliability of the high‐voltage pulse driver system. Aiming at the electromagnetic interference (EMI) problems of the RS422 communication circuit in the Tesla pulse driver, the generated disturbance sources and characteristics from the Tesla pulse driver itself are analysed in five divided work stages, and two typical simplified EMI coupling modes for the communication circuit are also presented in this Letter. In the RS422 communication cable circuits between the subsystems of the pulse driver, the time‐domain resonant characteristics of the communication signal and the conducting disturbances are analysed. The error and failure modes of the RS422 communication data caused by the full time‐domain conducting interference are also revealed. Evaluation and calculation method for the time‐domain resonant probability and the interference probability of the RS422 communication signals is also put forward. The communication interference probability is also calculated under different repetition work modes of the Tesla pulse driver. In view of the time‐domain resonance phenomenon, some effective ways for time‐domain resonance elimination and interference compression are put forward.