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Optical Data Centers Router Design with Fiber Delay Lines and Negative Acknowledgement

机译:光学数据中心路由器设计具有光纤延迟线和负确认

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Optical packet switch/optical interconnect will be integral part of high speed switching and datacenter applications. In recent past Arrayed Waveguide Grating (AWG) based designs have shown promising solutions for contention resolution and packet routing. Most of the designs take the advantage of wavelength parallelism and wavelength-based routing nature of AWG. In general, two classes of design have emerged: buffer less and with buffer. In recent past the concept of All-Optical Negative Acknowledgement (AO-NACK) is introduced in case of buffer-less design. Here, in case of dropping of packet a negative acknowledgement is send back to the sender to re-transmit the packet. The drawback of the scheme is that the numbers of re-transmitted packets are huge in buffer less design. In this paper, a buffer-based design is presented where both buffer and negative acknowledgement is utilized to reduce the number of transmitted packets to 3000 times compare with buffer less design, in case of transmission of 106packets. Moreover, negative acknowledgement hardware design is simplified significantly.
机译:光学分组交换机/光学互连将是高速切换和数据中心应用的组成部分。在近期过去的阵列波导光栅(AWG)的设计已经显示了争用分辨率和分组路由的有希望的解决方案。大多数设计采用AWG的波长并行性和基于波长的路由性质的优势。一般来说,出现了两类设计:缓冲少和缓冲区。最近过去,在减少缓冲设计的情况下,介绍了所有光学负致确认(AO-NACK)的概念。这里,在丢弃分组的情况下,将否定确认发送回发送器以重新发送分组。该方案的缺点是重新传输的分组的数量在缓冲区的设计中巨大。在本文中,提出了一种基于缓冲的设计,其中缓冲器和否定确认用于将传输的分组的数量减少到3000次与缓冲器更少的设计进行比较,以便在传输106 ackets的情况下。此外,否定确认硬件设计显着简化。

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