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Cooperative Slotted Aloha with Reservation for Multi-Receiver Satellite IoT Networks

机译:预留多插槽卫星IoT网络的协作式时隙Aloha

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How to solve the collision problem in Aloha is a popular research direction all the time. In order to solve this problem in multi-receiver satellite IoT networks, a novel random access scheme named Cooperative Slotted Aloha with Reservation (R-CSA) is proposed. One characteristic of multi-receiver satellite IoT networks is the different propagation delay among receivers, which can be used in the proposed R-CSA for iterative interference cancellation. The other problem common in Aloha schemes is low critical point (after this point, as the normalized load increases, the throughput decreases). For this problem, reservation is considered in the proposed scheme. The performance of R-CSA is analyzed with mathematical method and simulations. Simulation results show that R-CSA outperforms R-CRDSA in terms of packet loss ratio and throughput. According to the simulation results, the critical point of R-CSA is higher than R-CRDSA. And in the aspect of packet loss ratio(PLR), even if the normalized load is up to 1, the PLR of R-CSA is still lower than 0.1.
机译:如何解决Aloha的碰撞问题一直是一个热门的研究方向。为了解决多接收器卫星物联网网络中的这一问题,提出了一种新的随机访问方案,即预留协作协作时隙Aloha(R-CSA)。多接收机卫星IoT网络的一个特点是接收机之间的传播延迟不同,可以在建议的R-CSA中使用它来进行迭代干扰消除。 Aloha方案中的另一个常见问题是临界点低(此后,随着标准化负载的增加,吞吐量会降低)。对于此问题,在建议的方案中考虑保留。通过数学方法和仿真分析了R-CSA的性能。仿真结果表明,在丢包率和吞吐量方面,R-CSA优于R-CRDSA。根据仿真结果,R-CSA的临界点高于R-CRDSA。并且在丢包率(PLR)方面,即使归一化负载最大为1,R-CSA的PLR仍低于0.1。

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