BUILDING REPUTATION FOR SERVICE-ORIENTED AMI: MODELING, ALGORITHMS, AND ANALYSIS
Document Type : Research Paper
10.22099/ijste.2014.2101
Abstract
Service reputation is a key factor for service selection and service composition in Service-Oriented Ambient Intelligence systems. Hence, service reputation computing should fully reflect the feature of multi-rating fusion and the utility value dynamic attenuation characters of the rating. The paper combines D-S evidence theory with dynamic attenuation and puts forward a service reputation computing algorithm based on multi-rating fusion, which is adapted to the Ambient Intelligence systems. First, a layered computing model of the service reputation is given. Then, a mechanism of dynamic attenuation based on time windows, an objective rating and advertisement honesty rating of service, and a user credibility computing algorithm are presented. Afterward, the rating information is combined with the D-S evidence theory to raise an aggregation algorithm of the service general reputation for the Ambient Intelligence environments. Finally, a prototype test is carried out to verify the effectiveness and availability of the model together with the algorithms.
(2014). BUILDING REPUTATION FOR SERVICE-ORIENTED AMI: MODELING, ALGORITHMS, AND ANALYSIS. Iranian Journal of Science and Technology Transactions of Electrical Engineering, 38(E1), 99-109. doi: 10.22099/ijste.2014.2101
MLA
. "BUILDING REPUTATION FOR SERVICE-ORIENTED AMI: MODELING, ALGORITHMS, AND ANALYSIS", Iranian Journal of Science and Technology Transactions of Electrical Engineering, 38, E1, 2014, 99-109. doi: 10.22099/ijste.2014.2101
HARVARD
(2014). 'BUILDING REPUTATION FOR SERVICE-ORIENTED AMI: MODELING, ALGORITHMS, AND ANALYSIS', Iranian Journal of Science and Technology Transactions of Electrical Engineering, 38(E1), pp. 99-109. doi: 10.22099/ijste.2014.2101
VANCOUVER
BUILDING REPUTATION FOR SERVICE-ORIENTED AMI: MODELING, ALGORITHMS, AND ANALYSIS. Iranian Journal of Science and Technology Transactions of Electrical Engineering, 2014; 38(E1): 99-109. doi: 10.22099/ijste.2014.2101