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首页> 外文期刊>IEEE transactions on mobile computing >Versatile Access Control for Massive IoT: Throughput, Latency, and Energy Efficiency
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Versatile Access Control for Massive IoT: Throughput, Latency, and Energy Efficiency

机译:用于大规模物联网的多功能访问控制:吞吐量,延迟和能效

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摘要

In this paper, we propose a novel access control (AC) mechanism for cellular internet of things (IoT) networks with massive devices, which effectively satisfies various performance metrics such as access throughput, access delay, and energy efficiency. Basic idea of the proposed AC mechanism is to adjust access class barring (ACB) factor according to performance targets. For a given performance target, we derive the optimal ACB factors by considering not only the conventional preamble collision detection technique but also the early preamble collision detection technique, respectively. In addition, the proposed AC mechanism considers overall radio resources to optimize the ACB factor, which includes the number of preambles, random access response (RAR) messages, and physical-layer uplink shared channels (PUSCHs), while most conventional ACB schemes consider only the number of preambles. In particular, the proposed AC mechanism is illustrated with two representative performance metrics: latency and energy efficiency. Through extensive computer simulations, it is shown that the proposed versatile AC mechanism outperforms the conventional ACB schemes in terms of various performance metrics under diverse resource constraints.
机译:在本文中,我们提出了一种用于蜂窝互联网的新型访问控制(AC)机制(IOT)网络与大规模设备的网络,其有效满足各种性能度量,例如访问吞吐量,访问延迟和能效。所提出的AC机制的基本思想是根据性能目标调整访问类禁区(ACB)因子。对于给定的性能目标,我们不仅考虑传统的前导碰撞检测技术,而且分别考虑最佳的ACB因子。此外,所提出的AC机制考虑了整体无线电资源,以优化ACB因子,其包括前导码,随机接入响应(RAR)消息和物理层上行链路共享通道(PUSCHS),而大多数传统的ACB方案仅考虑前导码的数量。特别地,所提出的AC机制被示出为两个代表性的性能度量:延迟和能量效率。通过广泛的计算机模拟,表明所提出的多功能AC机构在不同资源限制下的各种性能指标方面优于传统的ACB方案。

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