首页> 外文会议>Conference on Components for Wavelength Division Multiplexing >Reduced switching delay in wavelength-division-multiplexed 2D multiple-plane optical interconnections using multiple-wavelength vertical-cavity surface-emitting laser (VCSEL) arrays
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Reduced switching delay in wavelength-division-multiplexed 2D multiple-plane optical interconnections using multiple-wavelength vertical-cavity surface-emitting laser (VCSEL) arrays

机译:使用多波长垂直腔表面发射激光器(VCSEL)阵列,从波长分腔多路复用2D多平面光互连中降低开关延迟

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We calculate the expected number of internodal hops for a network established with a wavelength-division-multiplexed (WDM) 2-D multiple-plane optical interconnection. This WDM optical interconnection incorporates WDM pixels consisting of multiple-wavelength vertical-cavity surface-emitting laser (VCSEL) arrays and wavelength-selective detectors. The WDM interconnection can support simultaneous and reconfigurable communication among a network of nodes. Using the expected number of hops as a measure of internodal switching delay, we show that the integration of WDM into the interconnection results in a significantly reduced delay as compared to single-wavelength systems. Substantial delay reduction results even when the number of wavelengths is small relative to the number of 2-D planes. We analyze the bus, dual-bus, and ring architectures since they define the means of communication between pixels. For each architecture, we analyze three configurations which provide each node access to: (1) an entire plane of pixels, (2) a row (or column) of pixels, or (3) an individual pixel. When each network node has access to an entire plane of pixels, the proposed WDM interconnection incurs substantially shorter delay than single-wavelength optical solutions. By allowing a node to access an entire row or column of pixels, the interconnection benefits from the incorporation of spatial-division-multiplexing (SDM) and the number of interconnections can grow substantially with negligible added delay. Finally, when a node can access only a single pixel, a large number of independent processors can be interconnected exhibiting far less switching delay than other electronic or optical interconnections of comparable size.
机译:我们计算用波分复用(WDM)2-D多平面光互连建立的网络的预期互联网跳数。该WDM光学互连包括由多波长垂直腔表面发射激光器(VCSEL)阵列和波长选择检测器组成的WDM像素。 WDM互连可以支持节点网络之间的同时和可重新配置的通信。与单波长系统相比,使用预期的跳跃数量作为衡量专员开关延迟的量度,我们表明WDM进入互连的集成导致延迟显着降低。即使当波长的数量相对于2-D平面的数量小,也是大量延迟降低结果。我们分析了总线,双总线和环形架构,因为它们定义了像素之间的通信手段。对于每个架构,我们分析三种配置,该配置提供给每个节点访问:(1)像素的整个平面,(2)像素的行(或列),或(3)单个像素。当每个网络节点可以访问整个像素平面时,所提出的WDM互连基本上比单波长光学解决方案产生大致较短的延迟。通过允许节点访问整个行或像素的列,互连来自包括空间分割复用(SDM)的互连和互连的数量可以基本上产生可忽略的添加延迟。最后,当节点可以仅访问单个像素时,大量独立的处理器可以互连,其比其他电子或光学互连的切换延迟更小。

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