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GLOBALSOFT TECHNOLOGIES 
Thermal-Aware Scheduling of Batch Jobs in Geographically 
Distributed Data Centers 
Decreasing the soaring energy cost is imperative in large data centers. Meanwhile, limited 
computational resources need to be fairly allocated among different organizations. Latency is 
another major concern for resource management. Nevertheless, energy cost, resource allocation 
fairness, and latency are important but often contradicting metrics on scheduling data center 
workloads. Moreover, with the ever-increasing power density, data center operation must be 
judiciously optimized to prevent server overheating. In this paper, we explore the benefit of 
electricity price variations across time and locations. We study the problem of scheduling batch 
jobs to multiple geographically-distributed data centers. We propose a provably-efficient online 
scheduling algorithm - GreFar - which optimizes the energy cost and fairness among different 
organizations subject to queueing delay constraints, while satisfying the maximum server inlet 
temperature constraints. GreFar does not require any statistical information of workload arrivals 
or electricity prices. We prove that it can minimize the cost arbitrarily close to that of the optimal 
offline algorithm with future information. Moreover, we compare the performance of GreFar 
with ones of a similar algorithm, referred to as T-unaware, that is not able to consider the server 
inlet temperature in the scheduling process. We prove that GreFar is able to save up to 16 percent 
of energy-fairness cost with respect to T-unaware. 
Existing system 
IEEE PROJECTS & SOFTWARE DEVELOPMENTS 
IEEE FINAL YEAR PROJECTS|IEEE ENGINEERING PROJECTS|IEEE STUDENTS PROJECTS|IEEE 
BULK PROJECTS|BE/BTECH/ME/MTECH/MS/MCA PROJECTS|CSE/IT/ECE/EEE PROJECTS 
CELL: +91 98495 39085, +91 99662 35788, +91 98495 57908, +91 97014 40401 
Visit: www.finalyearprojects.org Mail to:ieeefinalsemprojects@gmai l.com
Decreasing the soaring energy cost is imperative in large data centers. Meanwhile, limited 
computational resources need to be fairly allocated among different organizations. Latency is 
another major concern for resource management. Nevertheless, energy cost, resource allocation 
fairness, and latency are important but often contradicting metrics on scheduling data center 
workloads. Moreover, with the ever-increasing power density, data center operation must be 
judiciously optimized to prevent server overheating. 
Proposed System 
In this paper, we explore the benefit of electricity price variations across time and locations. We 
study the problem of scheduling batch jobs to multiple geographically-distributed data centers. 
We propose a provably-efficient online scheduling algorithm - GreFar - which optimizes the 
energy cost and fairness among different organizations subject to queueing delay constraints, 
while satisfying the maximum server inlet temperature constraints. GreFar does not require any 
statistical information of workload arrivals or electricity prices. 
System Requirements: 
Hardware Requirements: 
 System : Pentium IV 2.4 GHz. 
 Hard Disk : 40 GB. 
 Floppy Drive : 44 Mb. 
 Monitor : 15 VGA Colour. 
 Ram : 512 Mb. 
Software Requirements: 
 Operating system : Windows XP/7. 
 Coding Language : net, C#.net
 Tool : Visual Studio 2010 
 Database : SQL SERVER 2008

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2014 IEEE DOTNET CLOUD COMPUTING PROJECT Thermal aware scheduling of batch jobs in geographically distributed data centers

  • 1. GLOBALSOFT TECHNOLOGIES Thermal-Aware Scheduling of Batch Jobs in Geographically Distributed Data Centers Decreasing the soaring energy cost is imperative in large data centers. Meanwhile, limited computational resources need to be fairly allocated among different organizations. Latency is another major concern for resource management. Nevertheless, energy cost, resource allocation fairness, and latency are important but often contradicting metrics on scheduling data center workloads. Moreover, with the ever-increasing power density, data center operation must be judiciously optimized to prevent server overheating. In this paper, we explore the benefit of electricity price variations across time and locations. We study the problem of scheduling batch jobs to multiple geographically-distributed data centers. We propose a provably-efficient online scheduling algorithm - GreFar - which optimizes the energy cost and fairness among different organizations subject to queueing delay constraints, while satisfying the maximum server inlet temperature constraints. GreFar does not require any statistical information of workload arrivals or electricity prices. We prove that it can minimize the cost arbitrarily close to that of the optimal offline algorithm with future information. Moreover, we compare the performance of GreFar with ones of a similar algorithm, referred to as T-unaware, that is not able to consider the server inlet temperature in the scheduling process. We prove that GreFar is able to save up to 16 percent of energy-fairness cost with respect to T-unaware. Existing system IEEE PROJECTS & SOFTWARE DEVELOPMENTS IEEE FINAL YEAR PROJECTS|IEEE ENGINEERING PROJECTS|IEEE STUDENTS PROJECTS|IEEE BULK PROJECTS|BE/BTECH/ME/MTECH/MS/MCA PROJECTS|CSE/IT/ECE/EEE PROJECTS CELL: +91 98495 39085, +91 99662 35788, +91 98495 57908, +91 97014 40401 Visit: www.finalyearprojects.org Mail to:ieeefinalsemprojects@gmai l.com
  • 2. Decreasing the soaring energy cost is imperative in large data centers. Meanwhile, limited computational resources need to be fairly allocated among different organizations. Latency is another major concern for resource management. Nevertheless, energy cost, resource allocation fairness, and latency are important but often contradicting metrics on scheduling data center workloads. Moreover, with the ever-increasing power density, data center operation must be judiciously optimized to prevent server overheating. Proposed System In this paper, we explore the benefit of electricity price variations across time and locations. We study the problem of scheduling batch jobs to multiple geographically-distributed data centers. We propose a provably-efficient online scheduling algorithm - GreFar - which optimizes the energy cost and fairness among different organizations subject to queueing delay constraints, while satisfying the maximum server inlet temperature constraints. GreFar does not require any statistical information of workload arrivals or electricity prices. System Requirements: Hardware Requirements:  System : Pentium IV 2.4 GHz.  Hard Disk : 40 GB.  Floppy Drive : 44 Mb.  Monitor : 15 VGA Colour.  Ram : 512 Mb. Software Requirements:  Operating system : Windows XP/7.  Coding Language : net, C#.net
  • 3.  Tool : Visual Studio 2010  Database : SQL SERVER 2008