课题基金 / 基金详情

EWOC - Enabling Virtualized Wireless and Optical Coexistence for 5G and Beyond

EWOC - Enabling Virtualized Wireless and Optical Coexistence for 5G and Beyond
EWOC - 实现 5G 及更高版本的虚拟化无线和光纤共存
批准号:
EP/X030342/1
负责人:
Jonathan Rodriguez
金额:
$33.8万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --

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中文摘要
翻译
EWOC项目旨在开发一种新型的融合光无线网络解决方案,该解决方案依赖于灵活的、可虚拟化的基础设施,满足5G(B5 G)需求之外的全面资源优化要求。将通过合并光层虚拟化、高频毫米波传输、多天线技术、小区致密化、基于光纤上的地面(ToF)的毫微微小区连接和云无线电接入网络(C-RAN)架构的使能概念来寻求根本性创新。EWOC将致力于高容量、低延迟通信(40-90 GHz频率),为5G基线的50倍改进奠定基础。这需要开发新的毫微微小区技术,以及与第一轮传统部署的无缝共存。这种情况下,还需要新的信道模型和仿真方法,以达到所需的折衷之间的编码,吞吐量和致密化的限制。EWOC将依靠光纤部署实现ToF连接,作为C-RAN架构的“附加功能”,支持具有不同需求的多功能服务的资源管理。将通过新颖的光收发器方案和软件定义的基于网络的数字信号处理技术,实现符合场景的光前传虚拟化技术,旨在提供超越最先进的资源优化的成本效益。研究和培训学科将成为实现增加容量、覆盖范围、灵活性、频谱效率、成本效益、供应商不可知性和可升级性。EWOC为促进此类跨学科创新提供了一个框架,具有来自不同学科的模型和方法的强大互操作性。因此,EWOC培训网络旨在从专题和跨学科两个方面为ESRs的科学和专业成长提供机会。
英文摘要
EWOC project aims at developing a novel converged optical wireless network solution relying on a flexible, virtualizable infrastructure, required for full resource optimisation beyond 5G (B5G) requirements. Fundamental innovation will be sought through merging of the enabling concepts of optical layer virtualization, high frequency mm-wave transmission, multiple antenna technology,cell densification, terra-over-fiber (ToF) based femtocell connectivity and cloud radio access network (C- RAN) architecture. EWOC will aim at high capacity, low latency communications (40-90 GHz frequency), providing the basis for a 50-fold improvement over the 5G baseline. This necessitates development of novel, femto-cell technology, and seamless coexistence with first round legacy deployment. Such scenario also requires novel channel models and simulation methodologies to attain the desired trade-off betweencoverage, throughput and densification limits. EWOC will rely on fiber-optic deployment towards ToF connectivity, as an "added on feature" for the C-RAN architecture supporting resource management of versatile services with varying demands. Scenario compliant optical fronthaul virtualisation techniques, designed to provide cost effective beyond state-of-the-art resource optimisation, will bepursued through novel optical transceiver schemes and software defined network-based digital signal processing techniques.Research and training disciplines will serve as building blocks towards the scientific and socio-economic goals of increased capacity, coverage, flexibility, spectral efficiency, cost effectiveness, vendor agnosticism, and upgradability.EWOC provides a framework for promotion of such interdisciplinary innovation, with strong interoperability of models and methodologies from different disciplines. As such, EWOC training network is designed to foster opportunities for scientific and professional growth of ESRs from both topical and interdisciplinary.
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