Reconfigurable Intelligent Surface (RIS) Empowered Future Wireless Networks
Reconfigurable Intelligent Surface (RIS) Empowered Future Wireless Networks
批准号:
RGPIN-2022-03820
负责人:
Anpalagan, Alagan
金额:
$4.66万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31
中文摘要
下一代无线系统的关键驱动力来自技术驱动的范式转变和现有无线网络的持续演进,以及沿着带宽需求和超低延迟的应用,如沉浸式虚拟现实、互联机器人和自主系统。这些应用对数据速度、计算、连接性和能谱效率的要求提出了新的挑战。可重构智能表面(RIS)是一种新的无线通信模式,被认为是一个有前途的使能者,以支持这些应用。RIS与大规模物联网、具有边缘智能和计算的增强型小蜂窝、数据驱动的智能网络控制、综合空中-地面网络和THz回程等关键技术相结合,具有实现高性能无线信息社会网络的巨大潜力。它为无线系统工程、设计和优化提供了大量机会。现有的RIS技术的研究在许多领域仍然是原始的。我们将利用无线通信、排队模型、优化、决策理论和机器学习等强大工具,在将边缘计算、空中通信和物联网与IRS集成时,解决资源分配、传输和大规模接入问题方面的诸多挑战。因此,拟议的研究计划旨在专注于设计和开发的先进和实用的技术,利用基于优化的传输和多址技术,在网络控制和管理的数据驱动的决策,在紧密耦合的异构网络的RIS辅助无线通信。我们尤其会:(i)在具有RIS的密集网络中开发使用分布式边缘智能的计算框架,用于低延迟应用;(ii)设计可扩展的共生无线电网络,以有效利用资源并为物联网设备提供大规模接入; ㈢通过利用先进的传输和接入技术,在一体化信息系统的空中-地面网络中发展无处不在的高容量通信,以及(iv)为区域信息系统制定积极主动的计划,使其在能源方面自我维持,并在配置和管理方面自我组织。这将提高无线网络容量和覆盖范围,并在下一代无线系统中提供稳健的服务质量和可靠的连接。新的理论贡献和创新技术所产生的拟议的研究将有重大影响的进化的RIS辅助通信。这项研究计划的新技术和新技术的发明将为加拿大战略ICT产业带来重要的竞争优势,并为加拿大带来重大的科学,经济和社会效益。
英文摘要
The key drivers of next generation wireless system come from the technology-driven paradigm shift and the continuous evolution of the existing wireless networks, along with bandwidth-hungry and ultra-low latency applications such as immersive virtual reality, connected robotics and autonomous systems. These applications pose new challenges to the requirements of data speed, computing, connectivity, and energy-spectral efficiency. Reconfigurable intelligent surfaces (RIS) is a new wireless communication paradigm and is considered a promising enabler to support such applications. RIS when integrated with key technologies such as massive IoT, enhanced small cells with edge intelligence and computing, data-driven intelligent network control, integrated aerial-terrestrial network, and THz backhauling has huge potential to realize high performance wireless information societal networks. It opens up a plethora of opportunities in wireless system engineering, design and optimization. Existing studies on the RIS technology are still primitive in many areas. We will tackle many challenges in resource allocation, transmission and massive access problems when integrating edge computing, aerial communication and IoT with IRS, using powerful tools from wireless communication, queuing models, optimization, decision theory and machine learning. The proposed research program therefore seeks to focus on the design and development of advanced and practical technologies for RIS-aided wireless communication in tightly coupled heterogeneous networks utilising optimization-based transmission and multiple access techniques, and learning-based data-driven decisions in network control and management. In particular, we will: (i) Develop a computing framework using distributed edge intelligence in dense networks with RIS for low-latency applications; (ii) Design scalable symbiotic radio network to efficiently utilize resources and provide massive access for IoT devices; (iii) Develop ubiquitous high-capacity communication in RIS-integrated aerial-terrestrial networks by exploiting advanced transmission and access technologies, and (iv) Develop proactive schemes for RIS systems to be self-sustaining in energy, and self-organizing in configurations and management. This will improve wireless network capacity and coverage, and provide robust quality of service and reliable connectivity in the next generation wireless systems. Novel theoretical contributions and innovative technologies resulting from the proposed research will have significant impact on the evolution of RIS-aided communication. Invention of new techniques and technologies from this research program will foster vital competitive edge to strategic Canadian ICT industry, and bring significant scientific, economic and social benefits to Canada.
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