Abstract

Model complex production business contains the attributes of completion time, accuracy, and so on; these factors influence each other; and pursuing the balance of these factors is the core idea of the article. Due to the problems of low accuracy or more completion time which may be caused by the traditional algorithm, the research group proposed the serial reduction algorithm which can achieve higher accuracy under deadline for the business. The algorithm sets the active portion for each task and uses the inverse iterative way to obtain a path that can balance both the completion time and the accuracy. By the case analysis, compared with the traditional unidirectional objective algorithm, serial reduction algorithm can optimize the accuracy under the deadline. Finally, the article analyses the parameters that can affect the algorithm performance; the experiment shows that serial reduction algorithm applied to the workflow is feasible and effective, which has the simple advantage.

Highlights

  • Modern business workflow technology is based on network flow which uses service as the basic elements to framework and uses collaborative services to complete the business

  • In the workflow system, selecting the service in each task is extremely important because it determines the efficiency and completion quality of the entire business

  • The business process of the boiler plant in a power plant can be divided into application, examine and approve, execution, record, debug, and completion of the six areas; after the analysis, the processes of application and completion can be set to virtual task

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Summary

Introduction

Modern business workflow technology is based on network flow which uses service as the basic elements to framework and uses collaborative services to complete the business. Maximizing the completion accuracy in a business process can make the path with optimal quality, so each task in the path needs the service which has maximum accuracy to complete, according to formula (6) to calculate the completion time of the path &

Results
Conclusion
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