SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network

There may exist many high-energy particles in spacecraft, so the FPGA circuits design needs corresponding sensitivity analysis and security reinforcement of anti-SEE (Single-event effects). However, it may be impractical to perform such measures to all modules of FGPA circuits due to limited resourc...

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Main Authors: Meng-Ru Wang, Tao Zhang, Jin-Bo Wang, Shan Zhou, Lu Kong
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9097220/
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spelling doaj-f34324b1363440ec8b3fdbeb977fb1252021-03-30T01:58:47ZengIEEEIEEE Access2169-35362020-01-018956189562810.1109/ACCESS.2020.29959489097220SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex NetworkMeng-Ru Wang0https://orcid.org/0000-0003-1056-6617Tao Zhang1Jin-Bo Wang2Shan Zhou3Lu Kong4Technology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing, ChinaTechnology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing, ChinaTechnology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing, ChinaTechnology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing, ChinaTechnology and Engineering Center for Space Utilization, Chinese Academy of Sciences, Beijing, ChinaThere may exist many high-energy particles in spacecraft, so the FPGA circuits design needs corresponding sensitivity analysis and security reinforcement of anti-SEE (Single-event effects). However, it may be impractical to perform such measures to all modules of FGPA circuits due to limited resources. To identify the key modules which have a vital impact on the design and operation of FPGA circuits in spacecraft, this paper presents a novel scheme based on complex network for modeling the modules considering both the circuit functional structure and signal interaction relationship between modules. First, complex networks like MSN (Module Structure Network) and SFN (Signal Flow Network) are established to identify modules by treating each module as a node, and indicators including degree centrality (DC), betweenness centrality (BC), clustering coefficient (CC), etc., are calculated. Then, an entropy-weight method (EWM) is utilized to calculate the indicators comprehensively for identifying key modules. Next, network efficiency and sensitivity analysis are performed for failure modes. Finally, a case study is carried out, demonstrating the effectiveness of the proposed scheme for the key module identification. This work provides useful technical support for engineers in spacecraft FPGA circuits design and performance enhancement.https://ieeexplore.ieee.org/document/9097220/Complex networkFPGA circuitsSEE sensitivity analysisentropy-weight method
collection DOAJ
language English
format Article
sources DOAJ
author Meng-Ru Wang
Tao Zhang
Jin-Bo Wang
Shan Zhou
Lu Kong
spellingShingle Meng-Ru Wang
Tao Zhang
Jin-Bo Wang
Shan Zhou
Lu Kong
SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network
IEEE Access
Complex network
FPGA circuits
SEE sensitivity analysis
entropy-weight method
author_facet Meng-Ru Wang
Tao Zhang
Jin-Bo Wang
Shan Zhou
Lu Kong
author_sort Meng-Ru Wang
title SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network
title_short SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network
title_full SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network
title_fullStr SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network
title_full_unstemmed SEE Fault Sensitivity Analysis and Security Reinforcement Design for FPGA Circuits Based on Complex Network
title_sort see fault sensitivity analysis and security reinforcement design for fpga circuits based on complex network
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description There may exist many high-energy particles in spacecraft, so the FPGA circuits design needs corresponding sensitivity analysis and security reinforcement of anti-SEE (Single-event effects). However, it may be impractical to perform such measures to all modules of FGPA circuits due to limited resources. To identify the key modules which have a vital impact on the design and operation of FPGA circuits in spacecraft, this paper presents a novel scheme based on complex network for modeling the modules considering both the circuit functional structure and signal interaction relationship between modules. First, complex networks like MSN (Module Structure Network) and SFN (Signal Flow Network) are established to identify modules by treating each module as a node, and indicators including degree centrality (DC), betweenness centrality (BC), clustering coefficient (CC), etc., are calculated. Then, an entropy-weight method (EWM) is utilized to calculate the indicators comprehensively for identifying key modules. Next, network efficiency and sensitivity analysis are performed for failure modes. Finally, a case study is carried out, demonstrating the effectiveness of the proposed scheme for the key module identification. This work provides useful technical support for engineers in spacecraft FPGA circuits design and performance enhancement.
topic Complex network
FPGA circuits
SEE sensitivity analysis
entropy-weight method
url https://ieeexplore.ieee.org/document/9097220/
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AT shanzhou seefaultsensitivityanalysisandsecurityreinforcementdesignforfpgacircuitsbasedoncomplexnetwork
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