Development of Energy- Efficient Load Balancing Scheduling Algorithm in Real-time Systems

Youssef Mohammad نتيفه, Mohammad حجازية
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Abstract

Real- time systems are considered as one of the most important topics that have attracted the attention of researchers in various scientific and technical fields due to their widespread in many fields of communication, informatics, operating systems and automatic control systems. The basic idea in real- time systems is the execution of a set of tasks that are assigned to CPUs, within a time constraint associated with each of them, and this time constraint is called a deadline. Task scheduling in real- time systems is the main factor in determining the success or failure of the system. Therefore, many studies have imposed suggestions and hypotheses for improving scheduling, according to the underlined platform, whether it is single- processor, multi- processor, or multi- core processor. Researchers have recently focused on studying and providing solutions to scheduling problems, taking into account energy consumption since energy consumption today plays an important role in determining the efficiency and reliability of the system. Energy consumption can be saved either statically by turning the processor into sleep mode or dynamically by changing the frequency of the processor cores and thus reducing power consumption. However, a slight increase in frequency leads to executing more tasks in less time and thus can lead to an increase in the efficiency of the real- time system by reducing tasks which may miss its deadline at the time of execution. In this research, a new method has been proposed to control the processor frequency in an optimal manner that makes a balanced trade- off between power consumption and execution of tasks in real- time systems.
实时系统中高效负载均衡调度算法的发展
实时系统由于在通信、信息学、操作系统和自动控制系统等诸多领域的广泛应用,被认为是引起各科学技术领域研究人员关注的重要课题之一。实时系统的基本思想是在与每个cpu相关的时间限制内执行分配给cpu的一组任务,这个时间限制称为截止日期。在实时系统中,任务调度是决定系统成败的主要因素。因此,许多研究提出了改进调度的建议和假设,根据所强调的平台,无论是单处理器、多处理器还是多核处理器。由于能源消耗在决定系统的效率和可靠性方面起着重要作用,研究人员最近将重点放在研究和提供考虑能源消耗的调度问题的解决方案上。可以通过将处理器转换为休眠模式来静态地节省能耗,也可以通过改变处理器核心的频率来动态地节省能耗,从而降低功耗。然而,频率的轻微增加会导致在更短的时间内执行更多的任务,从而可以通过减少可能在执行时错过截止日期的任务来提高实时系统的效率。在本研究中,提出了一种新的方法,以最优的方式控制处理器频率,使实时系统在功耗和任务执行之间取得平衡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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