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Priority based computation: “An Initial study result of paradigm shift on real time computation”

机译:基于优先级的计算:“实时计算范式转换的初步研究结果”

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摘要

This research is purposed to increase computer function into a time driven to support real time system. This purposed would the processor can work according to determined time variable and can work optimally in a certained deadline. The first approachment to design some of processor that has a different bit space 64, 32, 16 and 8 bits. Each processor will be separated by selector/arbiter priority of a task. In addition, the design of the above processors are designed as a counter with varying levels of accuracy (variable precision computing). The selection is also done by using statistical control in the task are observed by the appearance of controller mounted on the front of the architecture bit space the second approach above. The last approach to ‘add’ certainty in the form of interval arithmetic precision cutting task that can be the upper bound and lower bound of the area (bounds). These four approachment can be structured orthogonally into a processor/several processors by introducing a new classifier that serves as a selector or a task arbiter. The results of the four approaches to prove that the processor is prepared by incorporating a variable bitspace adder selectors can provide optimality of 0.43%.
机译:这项研究旨在将计算机功能增加到一个时间驱动的系统中,以支持实时系统。这样做的目的是使处理器可以根据确定的时间变量工作,并可以在特定的期限内最佳工作。设计某些具有不同位空间64、32、16和8位的处理器的第一种方法。每个处理器将由任务的选择器/仲裁器优先级分隔。另外,上述处理器的设计被设计为具有不同精度水平的计数器(可变精度计算)。该选择还通过使用统计控制来完成,该任务通过上述第二种方法通过安装在体系结构位空间前面的控制器的外观来观察。最后一种以区间算术精确切割任务形式“增加”确定性的方法,该任务可以是区域(边界)的上限和下限。通过引入用作选择器或任务仲裁器的新分类器,可以将这四种方法正交地构建到一个或多个处理器中。四种方法的结果证明,通过结合可变位空间加法器选择器来准备处理器,可以提供0.43%的最优性。

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