Wavelength division multiplexing in local area networks

L. Kazovsky
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Abstract

Summary form only given, as follows. Transmitting and processing large blocks of data in real time will require broad-bandwidth networks. Next generation networks must also provide fault tolerance, flexibility, and scalability. Furthermore, future networks must avoid packet contention and minimize packet latency required by user applications such as image and voice transmission. To meet the foregoing new challenges, WDM networks are under intense investigation. These multi-channel networks can potentially achieve higher throughputs, lower delays and greater reliability than single channel optical networks. Two experimental high-speed WDM networks, STARNET and CORD, are being developed at Stanford University. Both networking experiments deal with the issues of signaling, contention resolution, synchronization and computer interfacing. In this talk, both projects will be described.
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局域网络中的波分复用
仅给出摘要形式,如下。实时传输和处理大量数据需要宽带网络。下一代网络还必须提供容错性、灵活性和可伸缩性。此外,未来的网络必须避免分组争用,并尽量减少用户应用程序(如图像和语音传输)所需的分组延迟。为了应对上述新挑战,WDM网络正受到广泛的研究。这些多通道网络可以潜在地实现比单通道光网络更高的吞吐量、更低的延迟和更高的可靠性。斯坦福大学正在开发两个实验性高速WDM网络STARNET和CORD。两个网络实验都涉及信令、争用解决、同步和计算机接口等问题。在这次演讲中,这两个项目都将被描述。
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