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Split reservation protocols using multiple wavelengths (SRPM) in dense WDM optical networks

机译:密集WDM光网络中使用多波长(SRPM)的拆分预留协议

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In GMPLS based WDM optical networks, a suitable signaling protocol is used to dynamically set up lightpaths. An important step, apart from routing and wavelength selection, in lightpath establishment is wavelength reservation. Protocols for wavelength reservation, as a part of signaling protocols, aim to minimize the blocking of lightpaths, which arises due to unavailability of wavelengths resulting from scarcity of wavelengths and/or collision of wavelengths. Since uni-wavelength reservation techniques attempt to reserve single wavelength, probability of blocking is more in them, compared to multi-wavelength reservation methods that scouts multiple wavelengths for reservation. In this work, we combine multi-wavelength reservation with dynamic splitting (at intermediate nodes) to propose two new protocols: Multi-wavelength Split Reservation Protocol with aggressiveness (SRPM-a) and Multi-wavelength Split Reservation Protocol with retry (SRPM-r). A comparative study with other analogous wavelength reservation protocols reveals that the proposed two protocols perform better than their peers. However, between them, SRPM-r performs considerably better than SRPM-a typically in dense WDM networks.
机译:在基于GMPLS的WDM光网络中,合适的信令协议用于动态建立光路。除了路由和波长选择以外,光路建立中的重要步骤是波长保留。作为信令协议的一部分的用于波长保留的协议旨在最小化光路的阻塞,这是由于波长稀缺和/或波长冲突导致的波长不可用而引起的。由于单波长保留技术试图保留单个波长,因此与侦察多个波长进行保留的多波长保留方法相比,阻塞的可能性更大。在这项工作中,我们将多波长保留与动态拆分(在中间节点处)结合,以提出两个新协议:具有攻击性的多波长拆分保留协议(SRPM-a)和具有重试的多波长拆分保留协议(SRPM-r) )。与其他类似的波长保留协议的比较研究表明,建议的两种协议的性能要优于其同类协议。但是,在密集的WDM网络中,它们之间的SRPM-r的性能要比SRPM-a好得多。

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