DocumentCode
2839139
Title
Overcoming Large Data Transfer Bottlenecks in RESTful Service Orchestrations
Author
Ko, Ryan K L ; Kirchberg, Markus ; Lee, Bu Sung ; Chew, Elroy
Author_Institution
Service Platform Lab., HP Labs. Singapore, Singapore, Singapore
fYear
2012
fDate
24-29 June 2012
Firstpage
654
Lastpage
656
Abstract
As REST (Representational State Transfer)-ful services are closely coupled to the HTTP (Hypertext Transfer Protocol), which eventually sits above the connection-based TCP (Transmission Control Protocol), it is common for RESTful services to experience latency and transfer inefficiencies especially in situations requiring the services to transfer large-scale data (i.e. above gigabytes of data) in RESTful workflows. Such inefficiencies are undesirable and impractical, and are compounded for RESTful service orchestrations in data-intensive industries such as Big Data analytics, cloud computing and life sciences. In this paper, we propose a non-invasive novel technique, Fast-Optimised-REST (FOREST), which enables RESTful services to overcome the traditional bottlenecks experienced during transfer of large sets of data. The initial experimental results show promise and demonstrated very significant reductions of up to 80% from original REST-ful data transfer times for extremely large data sets.
Keywords
Web services; data handling; transport protocols; Big Data analytics; HTTP; RESTful service orchestration; RESTful workflow; cloud computing; connection-based TCP; data transfer bottleneck; data-intensive industry; fast-optimised-REST technique; hypertext transfer protocol; life sciences; representational state transfer; transmission control protocol; Communication system security; Encapsulation; Payloads; Protocols; Receivers; Web services; Wireless LAN; Big Data; FOREST; Large Data Transfers; REST; RESTful Services; Service Orchestrations; TCP; Transfer Bottlenecks; UDT; Workflows;
fLanguage
English
Publisher
ieee
Conference_Titel
Web Services (ICWS), 2012 IEEE 19th International Conference on
Conference_Location
Honolulu, HI
Print_ISBN
978-1-4673-2131-0
Type
conf
DOI
10.1109/ICWS.2012.107
Filename
6257942
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