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NSERC/C-COM Industrial Research Chair in Intelligent Antenna and Radio Systems for Next Generation Millimeter-Wave Mobile Communications

NSERC/C-COM Industrial Research Chair in Intelligent Antenna and Radio Systems for Next Generation Millimeter-Wave Mobile Communications
NSERC/C-COM 下一代毫米波移动通信智能天线和无线电系统工业研究主席
批准号:
320316-2016
负责人:
SafaviNaeini, Safieddin
金额:
$61.1万
依托单位:
依托单位国家:
加拿大
项目类别:
Industrial Research Chairs
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31

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中文摘要
翻译
对信息带宽和连通性的无限需求要求无线电技术、通信系统和网络发生革命性的变化。具有100到1000倍带宽的下一代无线电网络将毫不迟疑地将一切连接到一切,数字经济的全球覆盖范围将扩展到世界的每一个角落(在海洋中、在天空深处,以及最偏远的村庄)。这一愿景远远超出了当前技术的能力。这个问题的根本解决方案是利用更高的频段,如毫米波和太赫兹,这些频段可以提供超宽的信息带宽。尽管毫米波的通信带宽极高,但由于成本高、辐射功率小、现有设备的灵敏度低以及无线电和天线技术的复杂性,毫米波频谱的商业(大众市场)开发相当有限。毫米波在空气和常见物体(建筑材料和人体)中的衰减是另一个困难。为了应对这些挑战,最有前途的解决方案之一是智能大规模多天线系统,其中来自大量相同的小的低成本/低功率天线模块的辐射在空间上被适当地组合,在期望的方向上产生高功率发射,而在不希望的方向上产生更少的辐射和干扰。这种模块化的无线电/天线系统内置的智能使功率消耗最小化,性能最大化。IRC计划的目标是研究和开发一种新的模块化和低成本的智能天线和无线电技术,用于下一代毫米波通信和传感应用。拟议技术的一个显著优势是它的“可伸缩性”。简单地说,不同形状和尺寸的复杂有源天线系统,针对不同的应用,都可以由相同的低功耗智能有源天线模块制造,可以批量生产,以最大限度地降低成本。在IRC计划期间,将开发这种系统的全面工作原型
英文摘要
Unlimited demand on information bandwidth and connectivity requires revolutionary changes in radiotechnologies, communication systems, and networks. Next generation radio networks with 100 to 1000 timesmore bandwidth, which will connect everything to everything with no delay, will extend the global reach of thedigital economy to every corner of this world (in the ocean, deep in the sky, and remotest villages). This visionis way beyond the capabilities of the current technologies. A radical solution to this problem is to exploit muchhigher frequency bands such as millimeter-wave and terahertz, which can provide ultra-broad informationbandwidth. Despite its extreme communication bandwidth, commercial (mass market) exploitation ofmillimeter-wave spectrum is quite limited due to the cost, small radiated power, poor sensitivity of the currentdevices, and complexity of the radio and antenna technologies. Millimeter-wave attenuation in the air andcommon objects (building material and human body) is another difficulty. To address these challenges, one ofthe most promising solutions is the intelligent massive multi-antenna systems, wherein radiations from a largenumber of small identical low-cost/low-power antenna modules, are properly combined in space to generate ahigh power emission in desirable direction and much less radiation and interference in unwanted directions.Thebuilt-in intelligence in such modular radio/antenna system minimizes the power consumption and maximizesthe performance.The objective of the proposed IRC program is to investigate and to develop a new modular and low-costintelligent antenna and radio technology for next generation millimeter-wave (mmW) communication andsensing applications. A significant advantage of the proposed technology is its "scalability". This simply meansthat the complex active antenna systems with various shapes and sizes, for different applications, can all bemade from the same low-power intelligent active antenna module, which can be mass-produced to minimizethe cost. A comprehensive working prototype of such system will be developed during this IRC program
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  • 项目类别:
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  • 批准号:
    320316-2016
  • 项目类别:
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  • 资助金额:
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  • 财政年份:
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