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Optical implementation of asynchronous-transfer-mode header-error control

机译:异步传输模式头错误控制的光学实现

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摘要

The asynchronous transfer mode (ATM) is a promising technique for broadband switching that is capable of supporting high-bit-rate multimedia services. Progress in all-optical parallel processing shows that photonics may be used in the future in full-functionality ATM switching nodes. All-optical switching fabrics and buffers have already been demonstrated. Fewer studies have been dedicated to ATM header-processing functions. As an example of photonic header processing, the implementation of a header-error control (HEC) subsystem by means of an optical circuit is investigated. Although traditional electronic decoders perform HEC in a serial mode, the architecture chosen for the optical HEC subsystem is based on parallelism, and an appropriate parallel-decoding algorithm was used in designing it.
机译:异步传输模式(ATM)是一种有前途的宽带交换技术,能够支持高比特率的多媒体服务。全光并行处理的进展表明,光子学将来可能会在功能齐全的ATM交换节点中使用。全光交换结构和缓冲区已被演示。很少有研究致力于ATM标头处理功能。作为光子头处理的示例,研究了通过光电路实现头错误控制(HEC)子系统的方法。尽管传统的电子解码器以串行模式执行HEC,但为光学HEC子系统选择的体系结构是基于并行性的,并且在设计时使用了适当的并行解码算法。

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