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Enhanced user preference based intelligent scheduling algorithm (E-UPISA)

机译:基于增强的用户偏好的智能调度算法(E-UPISA)

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摘要

In a multitasking environment, one of the important job of an Operating System (OS) is to keep the CPU busy with jobs. In such a way that each process achieves CPU time and possible extreme throughput achieved. One method is to put high priority to desired process and other low. Almost all OS put same scheduling policies on every coming process and do not observe user preferences. The results may not be beneficial for end user which may want some task to run first than other task. A task performed by a user must be given priority on another task. In this paper, we proposed a new scheduling algorithm Enhanced User Preference Based Intelligent Scheduling algorithm (E-UPISA) gives priority dynamically, first time it will give equal priority to all process and with time it will give high priority that users use frequently. The process which will not be used for long time their priority will be decreased. The experimental results display that E-UPISA decreases waiting time, turnaround time and response time for the user preferred processes and improve the whole efficiency of the system when matched with conventional scheduling algorithms.
机译:在多任务环境中,操作系统(OS)的一项重要任务是使CPU忙于处理任务。通过这种方式,每个进程都可以达到CPU时间并可能达到极高的吞吐量。一种方法是将高优先级放在期望的过程上,其他低优先级。几乎所有的OS都会在每个即将到来的进程中使用相同的调度策略,并且不会遵守用户的偏好。结果对于可能希望某些任务比其他任务先运行的最终用户可能没有好处。用户执行的任务必须优先于其他任务。在本文中,我们提出了一种新的调度算法,即基于增强用户偏好的智能调度算法(E-UPISA)动态地赋予优先级,第一次它将对所有进程赋予相同的优先级,随着时间的推移将赋予用户频繁使用的高优先级。长时间不使用的进程其优先级将降低。实验结果表明,与常规调度算法相匹配时,E-UPISA减少了用户首选流程的等待时间,周转时间和响应时间,并提高了系统的整体效率。

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