新一代多速率多波长无源光网络的动态时间分配和波长分配

Jingjing Zhang, N. Ansari
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引用次数: 6

摘要

新一代无源光网络(ng - pon)在新兴的带宽需求驱动下,通过使用更多的波长和提高光网络单元(onu)的数据速率,为用户提供更高的带宽。另一方面,为了顺利升级,NG-PON希望能够向后兼容当前的TDM pon,其中onu的数据速率保持不变。因此,在NG-PON中可以同时存在高速率onu和低速率onu。在这种多速率多波长网络中,带宽分配的关键参数包括实现所有onu之间的公平,鼓励低速率onu提高数据速率,以及有效利用波长资源。本文阐述了三个主要方面的贡献。首先,我们定义了onu的速率相关效用,作为在低速率和高速率onu之间进行带宽仲裁的基础。其次,为了实现onu之间的公平,我们采用充水思想,制定了效用最大-最小的公平带宽分配方案。第三,为了有效利用波长,我们将多波长PON中的资源分配问题映射为多处理器调度问题,并采用启发式算法解决NP-hard波长分配问题。
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Dynamic Time Allocation and Wavelength Assignment in Next Generation Multi-Rate Multi-Wavelength Passive Optical Networks
Driven by emerging bandwidth-hungry applications, next generation passive optical networks (NG-PONs) provide higher bandwidth to users by using more wavelengths and increasing data rates of optical network units (ONUs). On the other hand, for smooth upgrading, NG-PON is desired to be backward compatible with the current TDM PONs where data rates of ONUs remain unchanged. Thus, both high-rate ONUs and low-rate ONUs may coexist in NG-PON. The key parameters of bandwidth allocation in this multi-rate multi-wavelength network include achieving fairness among all ONUs, encouraging low-rate ONUs to increase their data rates, and utilizing wavelength resources efficiently. This paper illustrates contributions in three main aspects. First, we define rate-dependent utilities for ONUs, which serve as the basis for bandwidth arbitration among low-rate and high-rate ONUs. Second, to achieve fairness among ONUs, we employ water-filling idea and formulate a utility max-min fair bandwidth allocation scheme. Third, to efficiently utilize the wavelengths, we map the resource allocation problem in multi-wavelength PON into a multi-processor scheduling problem and employ a heuristic algorithm to address the NP-hard wavelength assignment problem.
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