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Energy efficient software development life cycle ??? An approach towards smart computing

机译:节能软件开发生命周期智能计算方法

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It is difficult to consider that the computers and its devices can play a vital role in environment pollution. There is also a myth that these devices use less energy. According to a survey $ 250 billion per year spent on powering computers worldwide only about 50% of that power is spent computing ??? the rest is wasted idling [1]. In this paper, we have proposed energy efficient software development life cycle (SDLC) model which is composed by six stages. These stages are Green requirement analysis, Green design, Green implementation, Green testing, Green maintenance and Green analysis. The last stage green analysis is very important because all the other life cycle stages get connected to this green analysis phase in a cyclic manner. The reason behind it When one role of one stage is over, then green analysis phase verifies and validate that phase to ensure the ecofriendly development of software. In green analysis phase, we have used the important concepts which can be implemented towards implementing smart computing techniques like Internet-of-Things, Cloud Computing, virtualization, solutions for green data centre, power optimization, and grid computing. Proposed energy efficient SDLC follows the iterative approach instead of the sequential approach, as if we want to make change in any of the phase then the same could be done easily.
机译:很难认为计算机及其设备在环境污染中起着至关重要的作用。还有一种说法是这些设备消耗的能量更少。根据一项调查,每年为全球计算机供电花费的2500亿美元中,只有约50%的电力用于计算?其余的都浪费了[1]。在本文中,我们提出了由六个阶段组成的节能软件开发生命周期(SDLC)模型。这些阶段包括绿色需求分析,绿色设计,绿色实施,绿色测试,绿色维护和绿色分析。最后阶段的绿色分析非常重要,因为所有其他生命周期阶段都以循环方式连接到该绿色分析阶段。其背后的原因当一个阶段的角色结束时,绿色分析阶段将验证并验证该阶段,以确保软件的生态友好开发。在绿色分析阶段,我们使用了可以实施的重要概念,以实现智能计算技术,例如物联网,云计算,虚拟化,绿色数据中心解决方案,电源优化和网格计算。拟议的高能效SDLC采用迭代方法,而不是顺序方法,就像我们要在任何阶段进行更改一样,可以轻松地进行相同的操作。

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