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通过光学相控阵实现可重构片上无线互连的设计。

Design of reconfigurable on-chip wireless interconnections through Optical Phased Arrays.

作者信息

Calò Giovanna, Bellanca Gaetano, Barbiroli Marina, Fuschini Franco, Serafino Giovanni, Bertozzi Davide, Tralli Velio, Petruzzelli Vincenzo

出版信息

Opt Express. 2021 Sep 27;29(20):31212-31228. doi: 10.1364/OE.427633.

Abstract

In this paper we report the design of a device allowing on-chip optical wireless interconnections, based on transmitting and receiving Optical Phased Arrays (OPA). The proposed device aims at realizing high-bandwidth and power-efficient reconfigurable connections between multiple nodes, e.g. chiplets stacked onto a common silicon interposer in 2.5D manycore systems. The communication through an optical wireless switch is a completely novel approach to overcome the bottleneck of wired communication and to provide flexibility in the network topology configuration. We report the OPA design criteria as well as the results of three-dimensional Finite Difference Time Domain (FDTD) simulations. We exploit the in-plane radiation of simple taper antennas to implement 1×N and N × N switching matrices. The effect of the multipath propagation in the on-chip multi-layered medium is also taken into account.

摘要

在本文中,我们报告了一种基于发射和接收光学相控阵(OPA)的片上光学无线互连设备的设计。所提出的设备旨在实现多个节点之间的高带宽和高能效可重构连接,例如在2.5D多核系统中堆叠在通用硅中介层上的小芯片。通过光学无线交换机进行通信是一种全新的方法,可克服有线通信的瓶颈并在网络拓扑配置中提供灵活性。我们报告了OPA设计标准以及三维有限差分时域(FDTD)模拟的结果。我们利用简单锥形天线的平面内辐射来实现1×N和N×N开关矩阵。还考虑了片上多层介质中多径传播的影响。

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