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Offloading Channel Allocation to Terminals in High-Density IoTs for Next Generation Networks

机译:为下一代网络卸载到高密度IOT的终端的通道分配

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Machine-to-Machine (M2M) communications in high-density Internet of Things (IoTs) pose significant challenges in accessing the wireless channel for concurrent transmissions. In this scenario, the channel allocation plays a crucial role, which usually involves a centralized coordination (such as a base station). With the increasing number of edge terminals as well as the dynamic network environment, the computation and information exchange for the centralized channel allocation would be a big burden for the coordination. In this paper, we tackle this challenging problem by proposing a distributed channel allocation method with blind rendezvous to enable collision-free concurrent transmission over multiple channels. Specifically, we first present a receiver-oriented channel allocation algorithm to reduce interference and then focus on a receiver-wait sender-jump blind channel rendezvous algorithm based on channel hopping techniques. The proposed channel allocation method allows each sender-receiver pair to obtain an appropriate channel for transmission without interfering other pairs, in a distributed manner. This study may help network researchers to contribute in the development of next generation high-density IoTs.
机译:在高密度互联网上的机器到机(M2M)通信(IOTS)在访问无线信道以进行并发传输时构成重大挑战。在这种情况下,信道分配扮演至关重要的作用,这通常涉及集中协调(例如基站)。随着边缘终端的越来越多的边缘终端以及动态网络环境,集中信道分配的计算和信息交换将是协调的重大负担。在本文中,我们通过提出具有盲区的分布式信道分配方法来解决这一具有挑战性的问题,以便在多个通道上实现无碰撞并发传输。具体地,我们首先介绍一种取向的受向信道分配算法,以减少干扰,然后专注于基于信道跳跃技术的接收到等待发送者 - 跳盲信道集合算法。所提出的信道分配方法允许每个发件人 - 接收器对以分布方式在不干扰其他对的情况下获得适当的信道以用于传输。本研究可以帮助网络研究人员在下一代高密度IOT的发展中做出贡献。

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