Highly scalable intelligent sensory application and time domain matrix for safety-critical system design

The designs of highly scalable intelligent sensory application—Ethernet-based communication architectures—are moving toward the integration of a fault recovery and fault-detection algorithm on the automotive industry. In particular, each port on the same network interface card design is required to...

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Main Author: Taikyeong Ted Jeong
Format: Article
Language:English
Published: SAGE Publishing 2018-04-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147717741102
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spelling doaj-13c6e2c00876401fb32ea7287dd450e02020-11-25T03:45:17ZengSAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772018-04-011410.1177/1550147717741102Highly scalable intelligent sensory application and time domain matrix for safety-critical system designTaikyeong Ted JeongThe designs of highly scalable intelligent sensory application—Ethernet-based communication architectures—are moving toward the integration of a fault recovery and fault-detection algorithm on the automotive industry. In particular, each port on the same network interface card design is required to provide highly scalable and low-latency communication. In this article, we present a study of intelligent sensory application for the Ethernet-based communication architecture and performance of multi-port configuration which is mainly used in safety-enhanced application such as automotive, military, finance, and aerospace, in other words, safety-critical applications. Our contributions and observations on the highly scalable intelligent behavior: (1) proposed network interface card board design scheme and architecture with multi-port configuration are a stable network configuration; (2) timing matrix is defined for fault detection and recovery time; (3) experimental and related verification methods by cyclic redundancy check between client–server and testing platform provide comparable results to each port configurations; and (4) application program interface–level algorithm is defined to make network interface card ready for fault detection.https://doi.org/10.1177/1550147717741102
collection DOAJ
language English
format Article
sources DOAJ
author Taikyeong Ted Jeong
spellingShingle Taikyeong Ted Jeong
Highly scalable intelligent sensory application and time domain matrix for safety-critical system design
International Journal of Distributed Sensor Networks
author_facet Taikyeong Ted Jeong
author_sort Taikyeong Ted Jeong
title Highly scalable intelligent sensory application and time domain matrix for safety-critical system design
title_short Highly scalable intelligent sensory application and time domain matrix for safety-critical system design
title_full Highly scalable intelligent sensory application and time domain matrix for safety-critical system design
title_fullStr Highly scalable intelligent sensory application and time domain matrix for safety-critical system design
title_full_unstemmed Highly scalable intelligent sensory application and time domain matrix for safety-critical system design
title_sort highly scalable intelligent sensory application and time domain matrix for safety-critical system design
publisher SAGE Publishing
series International Journal of Distributed Sensor Networks
issn 1550-1477
publishDate 2018-04-01
description The designs of highly scalable intelligent sensory application—Ethernet-based communication architectures—are moving toward the integration of a fault recovery and fault-detection algorithm on the automotive industry. In particular, each port on the same network interface card design is required to provide highly scalable and low-latency communication. In this article, we present a study of intelligent sensory application for the Ethernet-based communication architecture and performance of multi-port configuration which is mainly used in safety-enhanced application such as automotive, military, finance, and aerospace, in other words, safety-critical applications. Our contributions and observations on the highly scalable intelligent behavior: (1) proposed network interface card board design scheme and architecture with multi-port configuration are a stable network configuration; (2) timing matrix is defined for fault detection and recovery time; (3) experimental and related verification methods by cyclic redundancy check between client–server and testing platform provide comparable results to each port configurations; and (4) application program interface–level algorithm is defined to make network interface card ready for fault detection.
url https://doi.org/10.1177/1550147717741102
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