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Wave Propagation and Channel Modeling in Chip-Scale Wireless Communications: A Survey From Millimeter-Wave to Terahertz and Optics

机译:芯片级无线通信中的波传播和信道建模:从毫米波到太赫兹和光学的调查

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摘要

The miniaturization of transceivers and antennas is enabling the development of Wireless Networks-on-Chip (WNoC), in which chip-scale communication is utilized to increase the computing performance of multi-core/multi-chip architectures. Although the potential benefits of the WNoC paradigm have been studied in depth, its practicality remains unclear due to the lack of a proper characterization of the wireless channel at the chip scale and across the spectrum, among others. In this paper, the state of the art in wave propagation and channel modeling for chip-scale communication is surveyed. First, the peculiarities of WNoC, including the design drivers, architecture, environment, and on-chip electromagnetics are reviewed. After a brief description of the different methods to characterize wave propagation at chip-scales, a comprehensive discussion covering the different works at millimeter-wave (mmWave), Terahertz (THz) and optical frequencies is provided. Finally, the major challenges in the characterization of the WNoC channel and potential solutions to address them are discussed, providing a roadmap for the foundations of practical WNoCs.
机译:收发器和天线的小型化正在能够开发无线网络(Wnoc),其中利用芯片级通信来增加多核/多芯片架构的计算性能。虽然已经深入研究了WNOC范式的潜在益处,但由于缺乏芯片规模的无线信道和跨越光谱等,其实用性仍然不明确。在本文中,调查了对芯片级通信的波传播和信道建模中的领域的状态。首先,审查Wnoc的特点,包括设计驱动程序,架构,环境和片上电磁。在对芯片尺度下的不同方法的简要描述之后,提供了在毫米波(MMWAVE),太赫兹(THz)和光学频率下覆盖不同作品的综合讨论。最后,讨论了Wnoc信道表征和解决它们的潜在解决方案的主要挑战,为实际Wnocs的基础提供了路线图。

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