Collaborative Research: CNS Core: Medium: Programmable Computational Antennas for Sensing and Communications

合作研究:中枢神经系统核心:中:用于传感和通信的可编程计算天线

基本信息

  • 批准号:
    2211803
  • 负责人:
  • 金额:
    $ 55万
  • 依托单位:
  • 依托单位国家:
    美国
  • 项目类别:
    Standard Grant
  • 财政年份:
    2022
  • 资助国家:
    美国
  • 起止时间:
    2022-10-01 至 2025-09-30
  • 项目状态:
    未结题

项目摘要

The performance of wireless communications and sensing is fundamentally determined by the available degrees of freedom in space, frequency, and time. However, as the wireless systems are moving into mmWave 5G and beyond-5G with larger bandwidths (e.g., tens of GHz) combined with larger antenna arrays (e.g., 64 or more antennas at base stations), the number of degrees of freedom becomes so large that it is no longer feasible to access them in a practical manner. In other words, it is challenging to achieve sufficient computational degrees of control in practice to access the available degrees of freedom in higher spectra. This project seeks to address this challenge by developing computational antennas (CompTenna) that can perform programmable analog computations at the antenna in the mmWave and sub-THz bands. CompTenna is best viewed as a new computational unit – when combined with analog/digital computations, CompTenna will significantly expand the degrees of control to enable novel wireless communications and sensing applications on next-generation mobile devices. Through its coherent educational plan, this project will also train the next-generation workforce in the semiconductor and wireless industry by engaging graduate, undergraduate, and high-school students, especially the underrepresented minorities. This project will investigate the foundations of computational antennas (CompTenna) and novel methods to increase network capacity and enable new wireless sensing. It includes three research tasks. (1) CompTenna Foundations: develop CompTenna hardware, its computational model, and simulator. The goal is to synthesize a first-pass physical CompTenna design in a time-efficient manner, based on targeted high-level application needs. (2) Speeding Up the Network Using CompTenna: develop techniques to leverage all the degrees of freedom enabled by the CompTenna in an energy-efficient manner. In particular, this project focuses on how to use CompTenna to create optimal beamforming for single-user and multi-user communications and distributed interference management. (3) Doing More with CompTenna: develop foundations and methods for a layered joint sensing and communications architecture.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
无线通信和传感的性能从根本上取决于空间、频率和时间的可用自由度。然而,随着无线系统正在进入毫米波5G和更大带宽的5G(例如,几十GHz)与更大的天线阵列(例如,基站处有64个或更多天线),自由度的数量变得如此之大,以至于不再能够以实际的方式访问它们。换句话说,在实践中实现足够的计算控制度以访问更高光谱中的可用自由度是具有挑战性的。该项目旨在通过开发计算天线(CompTenna)来解决这一挑战,该天线可以在毫米波和亚太赫兹波段的天线上执行可编程模拟计算。CompTenna最好被视为一种新的计算单元-当与模拟/数字计算相结合时,CompTenna将显著扩展控制程度,以在下一代移动的设备上实现新颖的无线通信和传感应用。通过其连贯的教育计划,该项目还将通过吸引研究生、本科生和高中生,特别是代表性不足的少数民族,培训半导体和无线行业的下一代劳动力。该项目将研究计算天线(CompTenna)的基础以及增加网络容量和实现新无线传感的新方法。它包括三个研究任务。(1)CompTenna基础:开发CompTenna硬件,其计算模型和模拟器。我们的目标是根据有针对性的高级应用需求,以高效的方式合成第一遍物理CompTenna设计。(2)使用CompTenna加速网络:开发技术,以节能的方式利用CompTenna实现的所有自由度。特别是,该项目重点关注如何使用CompTenna为单用户和多用户通信以及分布式干扰管理创建最佳波束成形。(3)使用CompTenna做更多事情:该奖项反映了NSF的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。

项目成果

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Taiyun Chi其他文献

Biophysics of amplitude-modulated giga-hertz electromagnetic waves stimulation
调幅千兆赫兹电磁波刺激的生物物理学

Taiyun Chi的其他文献

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{{ truncateString('Taiyun Chi', 18)}}的其他基金

FuSe-TG: Towards TeraCity in South Texas: Sub-TeraHertz City-scale Wireless Networks
FuSe-TG:迈向德克萨斯州南部的 TeraCity:亚太赫兹城市规模无线网络
  • 批准号:
    2235437
  • 财政年份:
    2023
  • 资助金额:
    $ 55万
  • 项目类别:
    Standard Grant
CAREER: Towards High-Channel-Count Invasive and High-Resolution Non-Invasive Electrical Neural Interfaces
职业:迈向高通道数侵入式和高分辨率非侵入式电神经接口
  • 批准号:
    2238833
  • 财政年份:
    2023
  • 资助金额:
    $ 55万
  • 项目类别:
    Continuing Grant

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