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Routing Wavelength and Timeslot Reassignment Algorithms for TDM based Optical WDM Networks - Multi rate traffic demands

机译:基于TDM光学WDM网络的路由波长和时隙重新分配算法 - 多速率流量需求

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In this paper, we consider the problem of maximizing the time of first lightpath request rejection, T in the circuit-switched time division multiplexed (TDM) wavelength-routed (WR) optical WDM networks. TDM is incorporated into WDM, to increase the channel utilization when the carried traffic does not require the entire channel bandwidth. In TDM-WDM network, multiple sessions are multiplexed on each wavelength by assigning a sub-set of the TDM slots to each session. Thus, given a session request with a specified bandwidth, a lightpath has to be established by using the routing, wavelength and timeslot assignment (RWTA) algorithms. If the lightpath cannot be established, lightpath request rejection or call blocking occurs. As each lightpath is substantial revenue and long-lived, lightpath request rejection is highly unfavourable in the opitcal backbone networks. In this paper, we are proposing an intelligent routing, wavelength and time-slot reassignment algorithm for multi rate traffic demands, where, when a call gets blocked, the already established calls in the network are rerouted, wavelength and timeslot reassigned so as to accomodate the blocked call. Since we are talking of slow arrivals and long holding times for the lightpaths, it is possible to do this reassignment while provisioning a new call. Simulation based analyses are used to study the performance of the proposed reassignment algorithm. The results show that the proposed reassignment algorithm can be used to maximize the time of first call blocking, thereby accommodating more calls in the network before upgrading the network capacity.
机译:在本文中,我们考虑最大化第一光路请求抑制的时间,在电路交换时分复用(TDM)波长(WR)光WDM网络中的第一光路请求抑制。 TDM被纳入WDM,在携带的流量不需要整个通道带宽时增加信道利用率。在TDM-WDM网络中,通过将TDM插槽的子组分配给每个会话,在每个波长上复用多个会话。因此,给定具有指定带宽的会话请求,必须通过使用路由,波长和时隙分配(RWTA)算法来建立一个LIGHTPATH。如果无法建立LightPath,则会发生LightPath请求拒绝或呼叫阻止。由于每个LIGHTPATH是大量的收入和长期,LIGHTPATH请求拒绝在OPITCAL骨干网络中非常不利。在本文中,我们提出了一种智能路由,波长和时隙重新分配算法,用于多速率业务需求,其中,当呼叫阻止时,REROUTED,在网络中已经建立的呼叫,波长和时隙重新分配以便容纳被封锁的电话。由于我们正在谈论光路的慢速抵达和长期持续时间,因此可以在提供新呼叫时进行此重新分配。基于仿真的分析用于研究建议的重新分配算法的性能。结果表明,建议的重新分配算法可用于最大化第一呼叫阻止的时间,从而在升级网络容量之前容纳更多呼叫。

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