Scrutiny to Effectiveness of Various Software Process Model

Authors

  • Chetna Sisodiya Dept. of Computer Science, Govt. Holkar Science (Autonomous) College, Indore, India
  • Pradeep Sharma Dept. of Computer Science, Govt. Holkar Science (Autonomous) College, Indore, India

Keywords:

Software process models, Waterfall model, Iteration model, V-shaped model, spiral model, agile model, requirement, planning, design and implementation

Abstract

A software process model is summarized representation of a process. There are different software process models. It is very difficult to choose a model for the project and the developer choose the best effective model for the software. Developer phase many problem to develop a software, they confuse between different software model, which model is best to develop a software. This research describe five generic software process model and represent the effectiveness of different software process models according to the defects and features of each models. Various software models have been analyzed here with different techniques and the five software process models are waterfall, Agile, V-shaped, spiral and Iterative model. Therefore, this research goal is to represent effectiveness of different software process models and estimate best effective software process models according to the defects and features of each model. The main problem are, which model is more effective. How do we suggest one model for development and which method we use to compare all these models? Which is depend some features of a model. Methodology has been used to solve this problem here and the research methodology consists of five different methods combined. A combination of methods is used to provide a wide scope of information and opinions within the research. In this analysis the effectiveness of these models is also explained on the basis of requirement, planning, design and implementation.

 

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Published

2017-04-30

How to Cite

[1]
C. Sisodiya and P. Sharma, “Scrutiny to Effectiveness of Various Software Process Model”, Int. J. Sci. Res. Comp. Sci. Eng., vol. 5, no. 2, pp. 88–93, Apr. 2017.

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Section

Research Article