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Design of an NoC with on-chip photonic interconnects using adaptive CDMA links

机译:使用自适应CDMA链路的片上光子互连NoC设计

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Network on Chip (NoC) has established itself as a new paradigm for future generations of systems-on-chips (SoC) by providing the possibility of on-chip communication among the cores and thereby meeting the design productivity, scalability and signal integrity challenges of next-generation system designs. Photonic NoCs are being explored by present day researchers as a plausible solution towards the metal-interconnect problems like delay and power in NoCs. The design of a photonic Network on Chip, due to the high area and energy requirements of photonic interconnect, is a challenging issue. Currently, photonic network on chips utilize dense wavelength division multiplexing by modulating multiple high bandwidth wavelength channels from an off chip broadband LASER source. We use adaptive Code Division Multiple Access techniques with the above method to allocate a single wavelength channel to multiple transceivers, each one being allocated a unique PN code. The design has been simulated in Phoenixsim on OMNET++ framework and CDMA tranceivers were synthesized in Synopsys environment. This results in significant reductions in optical insertion loss and area.
机译:片上网络(NoC)通过提供内核之间的片上通信的可能性,从而满足了下一代产品的片上系统(SoC)的设计生产力,可扩展性和信号完整性方面的挑战,从而确立了自己的地位。下一代系统设计。当前的研究人员正在探索光子NoC,作为解决NoC中的金属互连问题(如延迟和功率)的合理解决方案。由于光子互连的高面积和能量要求,光子片上网络的设计是一个具有挑战性的问题。当前,片上光子网络通过调制来自片外宽带LASER源的多个高带宽波长信道来利用密集波分复用。我们将自适应码分多址技术与上述方法结合使用,以将单个波长信道分配给多个收发器,每个收发器都分配有唯一的PN码。该设计已经在Phoenixsim上的OMNET ++框架中进行了仿真,并且在Synopsys环境中综合了CDMA收发器。这导致光学插入损耗和面积的显着减小。

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