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Performance of ATM switch fabric using cross-point buffers

机译:使用交叉点缓冲区的ATM交换结构的性能

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Multistage switches consisting of a number of stages of small switching elements (SE) are often used in ATM switch fabrics. An ATM switch fabric performs the functions of switching and buffering of cells. The location of buffers inside a fabric is critical in the performance of the switch. Output buffered SEs have a higher throughput than input buffered SEs. Moreover, output buffered SEs do not suffer from buffer hogging as found in shared buffered SEs operating in a nonuniform traffic environment. However, output-buffered SEs require internal speedup, thereby requiring high-speed buffers and complex buffer management hardware. Crosspoint buffering, however, enjoys the advantages of output buffering without requiring an internal speedup of its buffers. The objective of this paper is to study the performance of a crosspoint buffered ATM switch operating under uniform and nonuniform traffic patterns. The performance of the crosspoint buffered switch is compared with that of the output buffered switch. Analytical models based on the Markov chains are developed to facilitate the study. The results from the model are validated using simulation. It is shown that the model provides very accurate results.
机译:在ATM交换结构中经常使用由多级小型交换元件(SE)组成的多级交换器。 ATM交换结构执行信元的交换和缓冲功能。结构内部缓冲区的位置对于交换机的性能至关重要。输出缓冲的SE具有比输入缓冲的SE高的吞吐量。而且,输出缓冲的SE不会遭受在非均匀流量环境中运行的共享缓冲SE中发现的缓冲震荡。但是,输出缓冲的SE需要内部加速,因此需要高速缓冲区和复杂的缓冲区管理硬件。但是,交叉点缓冲具有输出缓冲的优点,而无需内部加快其缓冲区的速度。本文的目的是研究在统一和非均匀流量模式下运行的交叉点缓冲ATM交换机的性能。将交叉点缓冲开关的性能与输出缓冲开关的性能进行比较。开发了基于马尔可夫链的分析模型以促进研究。使用仿真验证了模型的结果。结果表明,该模型提供了非常准确的结果。

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