Energy Consumption of TAGS in a Heterogeneous Environment Under Unknown Service Demand

Author(s):  
Ali Alssaiari ◽  
Nigel Thomas
Author(s):  
Wei Hou ◽  
Jian Sun ◽  
Lin Fu ◽  
Lequn Liu

The Chinese government has planned to reduce domestic energy consumption by 20% by 2010. In order to analysis the energy saving potential in the city’s energy system from different aspects, an energy consumption model of China energy system was provided based on bottom-up MARKAL model, which assessed the future competitiveness of different types of energy supplications and the future growth in energy service demand in China under different scenarios and conditions. The modeled results were also analyzed and discussed. The model established the foundation for the study of energy technology development and energy policy in the future.


2022 ◽  
Vol 12 (1) ◽  
pp. 0-0

Fog computing and Edge computing are few of the latest technologies which are offered as solution to challenges faced in Cloud Computing. Instead of offloading of all the tasks to centralized cloud servers, some of the tasks can be scheduled at intermediate Fog servers or Edge devices. Though this solves most of the problems faced in cloud but also encounter other traditional problems due to resource-related constraints like load balancing, scheduling, etc. In order to address task scheduling and load balancing in Cloud-fog-edge collaboration among servers, we have proposed an improved version of min-min algorithm for workflow scheduling which considers cost, makespan, energy and load balancing in heterogeneous environment. This algorithm is implemented and tested in different offloading scenarios- Cloud only, Fog only, Cloud-fog and Cloud-Fog-Edge collaboration. This approach performed better and the result gives minimum makespan, less energy consumption along with load balancing and marginally less cost when compared to min-min and ELBMM algorithms


Author(s):  
Shahzeen Z. Attari ◽  
Michael L. DeKay ◽  
Cliff I. Davidson ◽  
Wandi Bruine de Bruin

ICCTP 2009 ◽  
2009 ◽  
Author(s):  
Shunquan Huang ◽  
Siqin Yu ◽  
Zhongmin Liu

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