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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Error and flow control in terabit intelligent optical backplanes
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Error and flow control in terabit intelligent optical backplanes

机译:太比特智能光背板中的错误和流量控制

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摘要

The design of a free-space optical backplane which supports error and flow control functions is described. Traditionally, these functions are implemented in custom high-speed electronic application specific integrated circuits, which are physically removed from the optical interconnect layer. In this paper, we consider migrating these functions directly into the optoelectronic layer, yielding an "intelligent optical backplane." Conventional error control protocols are infeasible with optical backplanes since they require excessive amounts of hardware. The design of an efficient error control protocol based upon a multidimensional parity check, along with the effective flow control protocol is proposed and analyzed. The key blocks of the protocol have been implemented in 0.8- and 0.5-/spl mu/m CMOS/SEED devices and are summarized. The protocols require significantly less hardware than alternative schemes, and smart pixel arrays supporting these protocols are scalable to higher bandwidths and lower latencies. A very large scale integration analysis indicates that using 2004 technology, a free-space backplane can potentially be clocked at 1 GHz and support 24 Tb/s of bandwidth. Finally, the proposed error control protocols should be useful in optical disks and holographic memory systems, which also perform error control on large two-dimensional arrays of optical bits.
机译:描述了支持错误和流控制功能的自由空间光学背板的设计。传统上,这些功能是在自定义高速电子专用集成电路中实现的,这些集成电路从光学互连层中物理移除。在本文中,我们考虑将这些功能直接迁移到光电层中,从而产生“智能光学背板”。传统的错误控制协议在光学背板上是不可行的,因为它们需要大量的硬件。提出并分析了基于多维奇偶校验的有效差错控制协议的设计以及有效的流控制协议。该协议的关键模块已在0.8和0.5- / splμ/ m CMOS / SEED器件中实现,并进行了总结。与替代方案相比,这些协议所需的硬件要少得多,并且支持这些协议的智能像素阵列可扩展到更高的带宽和更低的延迟。大规模集成分析表明,使用2004年技术,自由空间背板的时钟频率可能为1 GHz,并支持24 Tb / s的带宽。最后,提出的错误控制协议应该在光盘和全息存储系统中有用,它们也可以对大型二维光学位阵列执行错误控制。

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