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A Link-Layer Synchronization and Medium Access Control Protocol for Terahertz-Band Communication Networks

机译:用于太赫兹频段通信网络的链路层同步和媒体访问控制协议

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In this paper, a link-layer synchronization and medium access control (MAC) protocol for very-high-speed wireless communication networks in the Terahertz (THz) band is presented. The protocol relies on a receiver-initiated handshake to guarantee synchronization between transmitter and receiver. Two scenarios are considered, namely, a macroscale scenario, where nodes utilize rotating directional antennas to periodically sweep the space while overcoming the distance problem at THz frequencies, and a nanoscale scenario, where nano-devices require energy harvesting systems to operate. Both scenarios are implemented on a centralized and an ad-hoc network architecture. A carrier-based physical layer is considered for the macro-scenario, whereas the physical layer for the nano-scenario is based on a femtosecond-long pulse-based modulation scheme with packet interleaving. The performance of the proposed MAC protocol is analytically investigated in terms of delay, throughput and probability of successful packet delivery, and compared to that of an adapted Carrier Sense Multiple Access with Collision Avoidance (CSMA/CA) with and without handshake. The results are validated by means of extensive simulations with ns-3, in which all the necessary THz elements have been implemented. The results show that the proposed protocol can maximize the successful packet delivery probability without compromising the achievable throughput in THz-band communication networks.
机译:本文介绍了Terahertz(THz)频带中的非常高速无线通信网络的链路层同步和介质访问控制(MAC)协议。该协议依赖于接收器启动的握手,以保证发射器和接收器之间的同步。考虑两种情况,即宏观场景,其中节点利用旋转方向天线周期性地扫描空间,同时克服THz频率的距离问题,以及纳米器件需要能量收集系统操作的纳米级场景。这两种情况都在集中和Ad-hoc网络架构上实现。考虑基于载波的物理层的宏观方案,而纳米场景的物理层基于具有分组交织的飞秒基于脉冲的调制方案。在成功分组交付的延迟,吞吐量和概率方面进行了分析研究了所提出的MAC协议的性能,并与具有握手和无握手的碰撞避免(CSMA / CA)的适应载波侦听多次访问相比。通过使用NS-3的广泛模拟验证结果,其中已实施所有必要的THz元素。结果表明,该协议可以最大化成功的分组传递概率,而不会影响THz带通信网络中可实现的吞吐量。

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