Different implementation of network level in embedded networking with QoS

Some modern standards in space industry, which are being used in embedded networking designs, provide quality of service features, which are implemented by means of virtual channels. Implementations of virtual channels mechanisms are very different. Each implementation has its latency characteristic...

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Main Authors: Nadezhda Matveeva, Elena Suvorova
Format: Article
Language:English
Published: FRUCT 2013-11-01
Series:Proceedings of the XXth Conference of Open Innovations Association FRUCT
Subjects:
Online Access:https://www.fruct.org/publications/fruct14/files/Mat_48.pdf
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author Nadezhda Matveeva
Elena Suvorova
author_facet Nadezhda Matveeva
Elena Suvorova
author_sort Nadezhda Matveeva
collection DOAJ
description Some modern standards in space industry, which are being used in embedded networking designs, provide quality of service features, which are implemented by means of virtual channels. Implementations of virtual channels mechanisms are very different. Each implementation has its latency characteristics for packet flow, hardware cost and performance. These parameters depend on the virtual channels quantity in a port and switch matrix's channels quantity connected to every port (connection point). The connection point quantity can vary from one to a number of virtual channels in port. We consider three structures and implementations of network layer. In the first implementation quantity of connection points is equal to number of virtual channels in a port. In the second - one connection point. The third - one connection point with lower priority data transmission interruption. In this article we compare characteristics of different architecture implementations and structures of port controllers and switch matrix. Also we analyze and simulate proposed mechanism. We present formulas to calculate minimum and maximum data packet transmission latency and compare theoretic and simulation results. Count of virtual channels is 4 for simulation, packet length - 250, 750 bytes. Moreover router's switch matrix hardware cost is evaluated in the article.
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spelling doaj.art-b522a2779dfc423fb3b2d3606328e5872022-12-21T18:47:42ZengFRUCTProceedings of the XXth Conference of Open Innovations Association FRUCT2305-72542343-07372013-11-0123214697610.1109/FRUCT.2013.6737947Different implementation of network level in embedded networking with QoSNadezhda Matveeva0Elena Suvorova1Saint-Petersburg State University of Aerospace Instrumentation, Saint-Petersburg, RussiaSaint-Petersburg State University of Aerospace Instrumentation, Saint-Petersburg, RussiaSome modern standards in space industry, which are being used in embedded networking designs, provide quality of service features, which are implemented by means of virtual channels. Implementations of virtual channels mechanisms are very different. Each implementation has its latency characteristics for packet flow, hardware cost and performance. These parameters depend on the virtual channels quantity in a port and switch matrix's channels quantity connected to every port (connection point). The connection point quantity can vary from one to a number of virtual channels in port. We consider three structures and implementations of network layer. In the first implementation quantity of connection points is equal to number of virtual channels in a port. In the second - one connection point. The third - one connection point with lower priority data transmission interruption. In this article we compare characteristics of different architecture implementations and structures of port controllers and switch matrix. Also we analyze and simulate proposed mechanism. We present formulas to calculate minimum and maximum data packet transmission latency and compare theoretic and simulation results. Count of virtual channels is 4 for simulation, packet length - 250, 750 bytes. Moreover router's switch matrix hardware cost is evaluated in the article.https://www.fruct.org/publications/fruct14/files/Mat_48.pdf Embedded networkingSpaceFibreVirtual channel
spellingShingle Nadezhda Matveeva
Elena Suvorova
Different implementation of network level in embedded networking with QoS
Proceedings of the XXth Conference of Open Innovations Association FRUCT
Embedded networking
SpaceFibre
Virtual channel
title Different implementation of network level in embedded networking with QoS
title_full Different implementation of network level in embedded networking with QoS
title_fullStr Different implementation of network level in embedded networking with QoS
title_full_unstemmed Different implementation of network level in embedded networking with QoS
title_short Different implementation of network level in embedded networking with QoS
title_sort different implementation of network level in embedded networking with qos
topic Embedded networking
SpaceFibre
Virtual channel
url https://www.fruct.org/publications/fruct14/files/Mat_48.pdf
work_keys_str_mv AT nadezhdamatveeva differentimplementationofnetworklevelinembeddednetworkingwithqos
AT elenasuvorova differentimplementationofnetworklevelinembeddednetworkingwithqos