Enhancing router QoS through job scheduling with weighted shortest processing time-adjusted [An article from: Computers and Operations Research]
Book Details
Author(s)N. Ye, Z. Yang, Y.C. Lai, T. Farley
PublisherElsevier
ISBN / ASINB000RR7RCK
ISBN-13978B000RR7RC1
AvailabilityAvailable for download now
MarketplaceUnited States 🇺🇸
Description
This digital document is a journal article from Computers and Operations Research, published by Elsevier in . The article is delivered in HTML format and is available in your Amazon.com Media Library immediately after purchase. You can view it with any web browser.
Description:
Most routers on the Internet employ a first-in-first-out (FIFO) scheduling rule to determine the order of serving data packets. This scheduling rule does not provide quality of service (QoS) with regards to the differentiation of services for data packets with different service priorities and the enhancement of routing performance. We develop a scheduling rule called Weighted Shortest Processing Time-Adjusted (WSPT-A), which is derived from WSPT (a scheduling rule for production planning in the manufacturing domain), to enhance router QoS. We implement a QoS router model based on WSPT-A and run simulations to measure and compare the routing performance of our model with that of router models based on the FIFO and WSPT scheduling rules. The simulation results show superior QoS performance when using the router model with WSPT-A.
Description:
Most routers on the Internet employ a first-in-first-out (FIFO) scheduling rule to determine the order of serving data packets. This scheduling rule does not provide quality of service (QoS) with regards to the differentiation of services for data packets with different service priorities and the enhancement of routing performance. We develop a scheduling rule called Weighted Shortest Processing Time-Adjusted (WSPT-A), which is derived from WSPT (a scheduling rule for production planning in the manufacturing domain), to enhance router QoS. We implement a QoS router model based on WSPT-A and run simulations to measure and compare the routing performance of our model with that of router models based on the FIFO and WSPT scheduling rules. The simulation results show superior QoS performance when using the router model with WSPT-A.
