首页> 外文会议>International Symposium on Intelligence Computation amp; Applications(ISICA'2005); 20050404-06; Wuhan(CN) >FEMTOComputing-New Architectural Ideas for Procedural and Evolutionary Computers Whose Components Switch in Femto-Seconds
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FEMTOComputing-New Architectural Ideas for Procedural and Evolutionary Computers Whose Components Switch in Femto-Seconds

机译:FEMTOComputing-组件转换为毫微微秒的过程计算机和进化计算机的新架构思想

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This paper presents some tentative ideas on how future procedural and evolutionary computers might compute, when nanotechnology gives us the possibility to store a bit of information on a single atom. At such tiny scales, switching times are likely to be in femto-seconds, i.e. quadrillionths of a second. Since electrical signals travel about 30 cms (a foot) in a nano-second, a femto-second will correspond to a millionth of this distance, i.e. a length of about 300 molecules. Traditional computing methodologies, using a centralized memory to store program instructions, and a centralized ALU to perform calculations, will no longer be appropriate, due to the time delays involved in fetching instructions from the program memory to the ALU. In the time this would take, the ALU would have changed its state (switching in femto-seconds). Hence both the program instructions, and the means used to execute them, need to be distributed throughout the 3D space of the computational medium, whatever form it takes. This paper discusses new and preliminary architectural ideas on how "femto-computers" can compute in both a procedural and in an evolutionary style.
机译:当纳米技术使我们有可能在单个原子上存储一些信息时,本文提出了一些关于未来过程计算机和进化计算机如何计算的设想。在如此微小的规模上,切换时间可能以飞秒为单位,即万亿分之一秒。由于电信号在一纳秒内传播约30厘米(一英尺),因此飞秒将相当于该距离的百万分之一,即大约300个分子的长度。由于使用了从程序存储器到ALU的指令所涉及的时间延迟,使用集中式存储器存储程序指令并使用集中式ALU执行计算的传统计算方法将不再适用。在需要的时间内,ALU会更改其状态(以飞秒为单位切换)。因此,程序指令和用于执行它们的装置都需要分布在计算介质的3D空间中,无论采用哪种形式。本文讨论了有关“毫微微计算机”如何以过程方式和进化方式进行计算的新的和初步的体系结构思想。

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