Title
Workflow Scheduling in the Cloud with Weighted Upward-rank Priority Scheme Using Random Walk and Uniform Spare Budget Splitting.
Abstract
We study a difficult problem of how to schedule complex workfiows with precedence constraints under a limited budget in the cloud environment. We first formulate the scheduling problem as an integer programming problem, which can be optimized and used as the baseline of performance. We then consider the traditional approach of scheduling jobs in a prioritized order based on the upward-rank of each job. For those jobs with no precedence constraints among themselves, the plain upward-rank priority scheme assigns priorities in an arbitrary way. We propose a job prioritization scheme that uses the Markovian chain stationary probabilities as a measure of the importance of jobs. The scheme keeps the precedence order for the jobs that have precedence constraints between each other and assigns priorities according to the jobs' importance for the jobs without precedence constraints. We finally design a uniform spare budget-splitting strategy that splits the spare budget uniformly across all the jobs. We test our algorithms on a variety of workfiows, including the Fast Fourier transform (FFT), the Gaussian elimination, typical scientific workfiows, randomly generated workfiows, and workfiows from an in-production cluster of an online streaming service company. We compare our algorithms with state-of-the-art algorithms. The empirical results show that the uniform spare budget splitting scheme outperforms the splitting scheme in proportion to extra demand on average for most cases, and the Markovian-based prioritization further improves the workfiow makespan.
Year
DOI
Venue
2019
10.1109/ACCESS.2019.2912652
IEEE ACCESS
Keywords
Field
DocType
Workflow scheduling,heterogeneous clouds,budget constraints,precedence constraints,schedule length
Workflow scheduling,Spare part,Computer science,Random walk,Computer network,Cloud computing,Distributed computing
Journal
Volume
ISSN
Citations 
7
2169-3536
1
PageRank 
References 
Authors
0.34
19
4
Name
Order
Citations
PageRank
hang zhang13116.05
Xiaoying Zheng220916.53
Ye Xia335231.20
Mingqi Li415825.44