This paper analyzes the typical functions of digital control circuit and its function modules, and develops a set of digital control circuit equipment based on Advanced RISC Machines (ARM) with typical function modules, including principle design, interference injection trace design, function design, and study the failure mode and threshold of typical function modules. Based on continuous wave (CW) and pulse wave, the direct power injection (DPI) method is used to test the conduction immunity of the digital control circuit, and the failure mode and sensitivity threshold of the digital control circuit are quantitatively obtained. This method can provide experimental verification for the immunity ability of the digital control circuit to different electromagnetic interference.
Yang XIAO
Southeast University
Zhongyuan ZHOU
Southeast University
Xiang ZHOU
Southeast University
Qi ZHOU
Southeast University
Mingjie SHENG
Southeast University
Yixing GU
Southeast University
Mingliang YANG
Southeast University
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Yang XIAO, Zhongyuan ZHOU, Xiang ZHOU, Qi ZHOU, Mingjie SHENG, Yixing GU, Mingliang YANG, "Experimental Investigation on Electromagnetic Immunity and Conduction Immunity of Digital Control Circuit Based on ARM" in IEICE TRANSACTIONS on Communications,
vol. E106-B, no. 10, pp. 969-978, October 2023, doi: 10.1587/transcom.2023EBP3003.
Abstract: This paper analyzes the typical functions of digital control circuit and its function modules, and develops a set of digital control circuit equipment based on Advanced RISC Machines (ARM) with typical function modules, including principle design, interference injection trace design, function design, and study the failure mode and threshold of typical function modules. Based on continuous wave (CW) and pulse wave, the direct power injection (DPI) method is used to test the conduction immunity of the digital control circuit, and the failure mode and sensitivity threshold of the digital control circuit are quantitatively obtained. This method can provide experimental verification for the immunity ability of the digital control circuit to different electromagnetic interference.
URL: https://global.ieice.org/en_transactions/communications/10.1587/transcom.2023EBP3003/_p
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@ARTICLE{e106-b_10_969,
author={Yang XIAO, Zhongyuan ZHOU, Xiang ZHOU, Qi ZHOU, Mingjie SHENG, Yixing GU, Mingliang YANG, },
journal={IEICE TRANSACTIONS on Communications},
title={Experimental Investigation on Electromagnetic Immunity and Conduction Immunity of Digital Control Circuit Based on ARM},
year={2023},
volume={E106-B},
number={10},
pages={969-978},
abstract={This paper analyzes the typical functions of digital control circuit and its function modules, and develops a set of digital control circuit equipment based on Advanced RISC Machines (ARM) with typical function modules, including principle design, interference injection trace design, function design, and study the failure mode and threshold of typical function modules. Based on continuous wave (CW) and pulse wave, the direct power injection (DPI) method is used to test the conduction immunity of the digital control circuit, and the failure mode and sensitivity threshold of the digital control circuit are quantitatively obtained. This method can provide experimental verification for the immunity ability of the digital control circuit to different electromagnetic interference.},
keywords={},
doi={10.1587/transcom.2023EBP3003},
ISSN={1745-1345},
month={October},}
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TY - JOUR
TI - Experimental Investigation on Electromagnetic Immunity and Conduction Immunity of Digital Control Circuit Based on ARM
T2 - IEICE TRANSACTIONS on Communications
SP - 969
EP - 978
AU - Yang XIAO
AU - Zhongyuan ZHOU
AU - Xiang ZHOU
AU - Qi ZHOU
AU - Mingjie SHENG
AU - Yixing GU
AU - Mingliang YANG
PY - 2023
DO - 10.1587/transcom.2023EBP3003
JO - IEICE TRANSACTIONS on Communications
SN - 1745-1345
VL - E106-B
IS - 10
JA - IEICE TRANSACTIONS on Communications
Y1 - October 2023
AB - This paper analyzes the typical functions of digital control circuit and its function modules, and develops a set of digital control circuit equipment based on Advanced RISC Machines (ARM) with typical function modules, including principle design, interference injection trace design, function design, and study the failure mode and threshold of typical function modules. Based on continuous wave (CW) and pulse wave, the direct power injection (DPI) method is used to test the conduction immunity of the digital control circuit, and the failure mode and sensitivity threshold of the digital control circuit are quantitatively obtained. This method can provide experimental verification for the immunity ability of the digital control circuit to different electromagnetic interference.
ER -