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Enhanced Irregular Repetition Slotted ALOHA with Degree Distribution Adjustment in Satellite Network

机译:卫星网络中度分布调整的增强型不规则重复时隙ALOHA

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Random access is a key technology in satellite communication, as a large number of machine- type communication (MTC) terminals accessing the satellite makes it difficult to guarantee the access quality. Irregular repetition slotted ALOHA (IRSA) is one random access protocol relying on transmitting irregular number of replicas in multiple time slots, achieving a peak throughput at 0.8 in practical implementations. However, the probability of sending a certain number of replicas stays the same when given degree distribution, without considering the effects of different loads, which means there are extra useless packets sent and brings power waste in IRSA. Therefore, enhanced irregular repetition slotted ALOHA (EIRSA) based on tracking degree distribution control (TDDC) algorithm is proposed in this paper with adaptive degree distribution adjustment scheme to reduce the number of replicas while maintaining the same access performance with adaptation. Simulation results show that proposed protocol can achieve higher performance at the same power level and it is adaptive to load change.
机译:随机访问是卫星通信中的一项关键技术,因为访问卫星的大量机器类型通信(MTC)终端使其难以保证访问质量。不规则重复时隙ALOHA(IRSA)是一种随机访问协议,它依赖于在多个时隙中传输不规则数量的副本,在实际实现中实现了0.8的峰值吞吐量。但是,在给定度数分布的情况下,发送一定数量的副本的可能性保持不变,而没有考虑不同负载的影响,这意味着发送了多余的无用数据包,并在IRSA中带来了功率浪费。因此,本文提出了一种基于跟踪度分布控制(TDDC)算法的增强型不规则重复时隙ALOHA(EIRSA),该算法采用自适应度分布调整方案,减少了副本的数量,同时保持了自适应的访问性能。仿真结果表明,该协议可以在相同功率水平下实现更高的性能,并且能够适应负载变化。

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