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A wavelength-buffering scheme for dynamic traffic in optical wavelength-division multiplexing networks

机译:光波分复用网络中用于动态业务的波长缓冲方案

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摘要

In optical wavelength-division multiplexing (WDM) networks, traffic can be very "bursty" at a fine time scale, even though it may seem to be smooth at coarser scales (e.g., Poisson or Poisson-related traffic). This paper analyzes the instantaneous characterization of Poisson traffic at a fine time scale. The analysis shows that the irregular oscillation of the instantaneous traffic load and the occurrence of blockings in a light-loaded network are highly correlated. Specifically, most blockings occur concentratively at the peaks of the instantaneous load. In some other time, network resources may not be sufficiently utilized. To make better utilization of network resources, a novel wavelength-buffering (WB) scheme is proposed for the first time in this paper. By reserving a portion of resources in a "wavelength buffer" under light loading and releasing them when the load goes up, a number of blockings brought by the oscillation of the traffic load can be avoided. Simulation results show that compared with other schemes such as adaptive routing, wavelength conversion (WC), and rerouting, the novel wavelength-buffering scheme achieves significantly better performance with respect to the network utilization and overall blocking probability.
机译:在光波分复用(WDM)网络中,即使在较粗的范围内看起来很平稳,流量在很好的时间尺度上也可能非常“突发”(例如,泊松或与泊松相关的流量)。本文分析了精细时间尺度上的泊松交通的瞬时特征。分析表明,瞬时负载的不规则振荡与轻载网络中阻塞的发生高度相关。具体来说,大多数阻塞集中在瞬时负载的峰值处。在其他时间,网络资源可能无法充分利用。为了更好地利用网络资源,本文首次提出了一种新的波长缓冲(WB)方案。通过在轻负载下将一部分资源保留在“波长缓冲区”中并在负载上升时释放它们,可以避免由于业务负载的振荡而带来的许多阻塞。仿真结果表明,与诸如自适应路由,波长转换(WC)和重新路由之类的其他方案相比,该新型波长缓冲方案在网络利用率和总体阻塞概率方面实现了明显更好的性能。

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