首页> 外文会议>Conference on Terabit Optical Networking: Architecture, Control, and Management Issues, Nov 6-7, 2000, Boston, USA >High―performance switchless WDM network using multiple free spectral ranges of an arrayed―waveguide grating
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High―performance switchless WDM network using multiple free spectral ranges of an arrayed―waveguide grating

机译:使用阵列波导光栅的多个自由光谱范围的高性能无开关WDM网络

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摘要

In this paper, we report on a scalable and reliable switchless wavelength division multiplexing (WDM) network that is based on an arrayed―waveguide grating (AWG). All wavelengths are used for data transmission and signaling is done in―band. Each node at the network periphery is equipped with a single tunable transceiver for data and a broadband light source for control while the network itself is completely passive. Broadcasting is realized by spectrally slicing the broadband signal. The proposed random distributed medium access protocol is reservation based and schedules variably sized data packets on a first―come―first―served and first―fit basis without resulting collisions. The protocol supports both packet and ciruit switching and allows for multicasting. The degree of concurrency is significantly increased by using multiple free spectral ranges (FSRs) of the AWG, spatially reusing wavelengths and transmitting data and control informations simultaneously by means of code division multiplexing. Our analytical results demonstrate that exploiting multiple FSRs of an AWG significantly improves the throughput―delay performance of the network.
机译:在本文中,我们报告了一种基于阵列波导光栅(AWG)的可扩展且可靠的无开关波分复用(WDM)网络。所有波长均用于数据传输,并且信令在带内完成。网络外围的每个节点都配备有一个用于数据的可调谐收发器和一个用于控制的宽带光源,而网络本身是完全无源的。广播是通过频谱切片宽带信号来实现的。所提出的随机分布式介质访问协议是基于预留的,并且在“先到先得”和“先验”的基础上调度大小可变的数据包,而不会导致冲突。该协议支持分组交换和电路交换,并允许多播。通过使用AWG的多个自由光谱范围(FSR),空间复用波长并通过码分复用同时传输数据和控制信息,可以显着提高并发度。我们的分析结果表明,利用AWG的多个FSR可以显着提高网络的吞吐量-延迟性能。

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