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Simulation analysis of a collisionless multiple access protocol for a wavelength division multiplexed star-coupled configuration

机译:波分复用星耦合配置的碰撞多通道协议的仿真分析

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A collisionless wavelength division multiple access protocol is introduced for a passive star-coupled photonic network that possesses significant performance and flexibility advantages over alternative approaches. A detailed simulation analysis is developed to study the behavior of the protocol with varying system characteristics. The protocol is control channel based: one of the WDM channels is used to reserve access for data packet transmission on the remaining data channels. Control channel access arbitration is achieved through time-division multiplexing, enabling all active nodes to transmit once every control cycle. This approach significantly reduces the long synchronization delays typical of time-division multiplexing systems: the control cycle length is proportional to the control packet size rather than the data packet size. The proposed approach has the advantage that variable sized data packets in a collisionless environment are supported without utilization degradation. Furthermore, a mechanism is introduced that relaxes the constraints on the switching times of the optical components by decreasing the performance sensitivity. The performance is evaluated in terms of network throughput, packet delay, and control and data channel utilization. In particular, this paper examines the performance impact with variations in the number of nodes and data channels, packet generation rate, data packet length, and the optical device switching latencies.
机译:引入了碰撞波分多进入协议,用于被动星耦合光子网络,其具有与替代方法具有显着性能和灵活性的优势。开发了一种详细的仿真分析,以研究具有不同系统特征的协议的行为。基于控制信道:其中一个WDM信道用于在剩余数据信道上保留用于数据分组传输的访问。通过时分复用实现控制信道访问仲裁,使所有活动节点能够发送一次每次控制周期。该方法显着降低了时分复用系统的典型的长同步延迟:控制周期长度与控制分组大小成比例而不是数据分组大小。所提出的方法具有以下优点,即在不利用劣化的情况下支持碰撞环境中的可变大小的数据包。此外,通过降低性能灵敏度,引入一种机构,其通过降低性能灵敏度来松弛光学组件的切换时间上的约束。在网络吞吐量,数据包延迟和控制和数据信道利用率方面评估性能。特别是,本文研究了节点数量和数据信道数,分组生成率,数据分组长度和光学设备切换延迟的变化的性能影响。

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