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Non-Coherent Symbol Detection with TOA Estimation for Nanocommunication Networks

机译:纳米通信网络中基于TOA估计的非相干符号检测

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With the latest developments in nanotechnology, nano-electronics, and nano-photonics, Wireless Nanosensor Networks (WNSNs) would soon become a reality. This paper presents a synchronization and symbol detection scheme for the pulse-based communications in the Terahertz (THz) Band (0.1 THz - 10 THz). The receiver architecture is based on the non-coherent Continuous-time Moving Average (CTMA) energy collection approach. In order to maintain the low complexity of the nanoreceiver, the synchronization stage is also based on CTMA mechanism. Moreover, a multiuser nanocommunication scenario is considered using the Time-Hopping Pulse-Position Modulation (TH-PPM) as a Multiple Access (MA) scheme. The receiver performance for both the synchronization and MA is investigated in terms of synchronization probability and Symbol Error Rate (SER) respectively. Simulation results show the suitability of the proposed scheme for the low cost and low complexity nanocommunication.
机译:随着纳米技术,纳米电子学和纳米光子学的最新发展,无线纳米传感器网络(WNSN)很快将成为现实。本文提出了一种同步和符号检测方案,用于太赫兹(THz)频带(0.1 THz-10 THz)中基于脉冲的通信。接收器架构基于非相干连续时间移动平均值(CTMA)能量收集方法。为了保持纳米接收器的低复杂性,同步阶段也基于CTMA机制。此外,考虑使用时跳脉冲脉冲位置调制(TH-PPM)作为多址(MA)方案的多用户纳米通信方案。分别根据同步概率和符号错误率(SER)研究了同步和MA的接收机性能。仿真结果表明,该方案适用于低成本,低复杂度的纳米通信。

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