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支持波分复用的端口通用多模光路由器。

An -Port Universal Multimode Optical Router Supporting Mode-Division Multiplexing.

作者信息

Yang Yuehong, Su Ye, Liu Bocheng, Chai Junxiong, Dai Li, Jiang Xiao, Ye Yichen, Song Tingting, Xie Yiyuan

机构信息

School of Electronics and Information Engineering, Southwest University, Chongqing 400715, China.

School of Computer and Information Science, Chongqing Normal University, Chongqing 401331, China.

出版信息

Micromachines (Basel). 2021 Nov 25;12(12):1438. doi: 10.3390/mi12121438.

Abstract

Optical network-on-chip (ONoC) is based on optical interconnects and optical routers (ORs), which have obvious advantages in bandwidth and power consumption. Transmission capacity is a significant performance in ONoC architecture, which has to be fully considered during the design process. Relying on mode-division multiplexing (MDM) technology, the system capacity of optical interconnection is greatly improved compared to the traditional multiplexing technology. With the explosion in MDM technology, the optical router supporting MDM came into being. In this paper, we design a multimode optical router (MDM-OR) model and analyze its indicators. Above all, we propose a novel multimode switching element and design an -port universal multimode optical router (MDM-OR) model. Secondly, we analyze the insertion loss model of different optical devices and the crosstalk noise model of -port MDM-OR. On this basis, a multimode router structure of a single-mode five-port optical router is proposed. At the same time, we analyze the transmission loss, crosstalk noise, signal-to-noise radio (OSNR), and bit error rate (BER) of different input-output pairs by inputting the 1550 nm TE0, TE1, and TE2 modes to the router.

摘要

片上光网络(ONoC)基于光互连和光路由器(OR),在带宽和功耗方面具有明显优势。传输容量是片上光网络架构的一项重要性能指标,在设计过程中必须充分考虑。依靠模式分割复用(MDM)技术,与传统复用技术相比,光互连的系统容量得到了极大提高。随着MDM技术的迅猛发展,支持MDM的光路由器应运而生。在本文中,我们设计了一种多模光路由器(MDM-OR)模型并分析其指标。首先,我们提出了一种新型多模交换元件并设计了一个N端口通用多模光路由器(MDM-OR)模型。其次,我们分析了不同光学器件的插入损耗模型以及N端口MDM-OR的串扰噪声模型。在此基础上,提出了一种单模五端口光路由器的多模路由器结构。同时,通过向路由器输入1550 nm的TE0、TE1和TE2模式,我们分析了不同输入输出对的传输损耗、串扰噪声、光信噪比(OSNR)和误码率(BER)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67d2/8707009/37771f1badd1/micromachines-12-01438-g001.jpg

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