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Collaborative Research: SWIFT: LARGE: DYNAmmWIC: Dynamic mmWave Spectrum Sharing Techniques for Public Safety Communications

Collaborative Research: SWIFT: LARGE: DYNAmmWIC: Dynamic mmWave Spectrum Sharing Techniques for Public Safety Communications
合作研究:SWIFT:大型:DYNAmmWIC:公共安全通信的动态毫米波频谱共享技术
批准号:
2030141
负责人:
Eylem Ekici
金额:
$42.0万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2021
资助国家:
美国
项目状态:
已结题
起止时间:
2021-01-01 至 2024-12-31

项目摘要

项目成果

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中文摘要
翻译
持续的COVID-19疫情再次凸显了公共安全通信(PSC)在保护公共安全人员和确保救生服务方面的重要性。随着5G网络向更高频率(包括毫米波频谱)过渡,将PSC解决方案集成到这一新频谱中成为一项挑战。提高数据速率、减少延迟和提高密度将有助于实现生命关键型PSC用例,例如高质量实时视频流和超低延迟通信。这些用例增加了对毫米波频谱中PSC的潜在需求。传统的频谱管理解决方案,例如分配专用PSC频带,是不可持续的。该项目为公共安全通信开发动态毫米波频谱共享解决方案(DYNAmmWIC),以支持毫米波频谱中的新型PSC用例,并将毫米波频谱设计为一等公民共享。这一愿景要求无线电、网络运营管理和网络架构层面的创新共存。该项目中开发的解决方案有可能从根本上改变毫米波频谱的使用,加速无线行业对6 G解决方案的准备,同时节省大量成本。该项目探索了四个主要目标,以提供从无线电硬件到网络架构的完整雷达-5G-公共安全通信(PSC)共存解决方案:(1)通过使用相同的波形开发联合雷达通信(JARC)系统,用于商用和公共安全车辆的雷达感知和数据传输。(2)开发毫米波频谱共享解决方案,以动态管理毫米波频谱中PSC、雷达感测、5G和V2 V通信、行人访问和回程的共存操作。(3)开发了一种新的毫米波下一代无线电接入网络(NG-RAN)架构,通过经过验证的编排工具实现更高的RAN协作和集成,以便在真实的测试平台上快速开发迭代解决方案。(4)一个全面的评价计划补充了开发的技术。在俄勒冈州立大学实施的JARC系统将增强iLNK,这是一个全市范围的远程访问无线测试平台。iLNK是UNL与林肯市合作开发的,在COVID-19相关限制期间,它已被证明是一种有价值的远程教学工具。PI将努力推出可以在远程访问的iLNK测试平台上进行的教育模块,降低无线教育的障碍。该项目将由一个高度多样化的PI团队进行,该团队具有长期的富有成效的合作记录和对多样性的影响。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。
英文摘要
The ongoing COVID-19 has, once more, highlighted the importance of public safety communications (PSC) in protecting public safety personnel and ensuring life-saving services. As 5G networks transition to higher frequencies, including the mmWave spectrum, integration of PSC solutions into this new spectrum becomes a challenge. Increased data rates, reduced delays, and improved density would lead to the realization of life-critical PSC use cases such as high-quality real-time video streaming and ultra-low-delay communication. These use cases increase the potential demand for PSC in the mmWave spectrum. Conventional spectrum management solutions, such as allocating dedicated PSC bands, are not sustainable. This project develops dynamic mmWave spectrum sharing solutions for public safety communications (DYNAmmWIC) to allow for novel PSC use cases in the mmWave spectrum and design the mmWave spectrum with sharing as the first-class citizen. This vision requires the coexistence of innovations in the radio, network operation management, and network architecture levels. The developed solutions in this project have the potential to fundamentally transform mmWave spectrum usage and accelerate the readiness of the wireless industry for 6G solutions while saving significant costs. The project explores four main goals to provide a complete radar-5G-public safety communications (PSC) coexistence solution from radio hardware to the network architecture: (1) A joint-radar communication (JARC) system is developed by using the same waveform for both radar sensing and data transmission in commercial and public safety vehicles. (2) A mmWave spectrum sharing solution is developed to dynamically manage the coexistence of operations for PSC, radar sensing, 5G, and V2V communications, pedestrian access, and backhaul in the mmWave spectrum. (3) A novel mmWave next-generation radio access network (NG-RAN) architecture is developed, allowing higher RAN co-operation and integration through proven orchestration tools for rapid development iterations of solutions on a real testbed. (4) A comprehensive evaluation plan complements the developed techniques. The JARC system, implemented at OSU, will augment iLNK, a city-wide, remotely accessible wireless testbed. iLNK is developed at UNL in collaboration with the City of Lincoln, which has proven to be a valuable remote teaching tool during the COVID-19-related restrictions. PIs will work to roll-out educational modules that can be conducted on the remotely accessible iLNK testbed, lowering the barrier to wireless education. This project will be conducted by a highly diverse team of PIs with a long track record of productive collaboration and impacts on diversity. Proposed solutions are rigorously tested to demonstrate a next-generation PSC model to local and national stakeholders.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.
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