5G毫米波相控阵手机天线设计

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5G毫米波频段相控阵手机天线设计,也是相控阵天线在手机环境中的应用
型偶极子阵列天线,其谐振频率为 1. MEtIs. Mobile d wireless 3lGHz,此时的带宽是15GHz(20 communications enablers for the 2020 GIz-35GI)。由此可得,变形偶极 information society. In: EU 7th Framework ProgrammcProjcct,https:/www.Mctis 子大线具有更宽的频带。 2020 两种阵列天线辐射方向图如图 2. Wen T, Zhu P Y. 5G: A technology 6、7所示: visionhuAwei2013.http://www.huawei com/ en/ abouL-huawei /publications/ dB《Rea1204Ga1自 winwin-magazine/hw-329304 htm .7116+000 .02524000 3. Cheng-Nar hu Kevin per 6.376030 Chung-Hang Yu, Tsai-Wen Hsaio and 2.E1 Der-Phonc Lin. Design of a mm-Wavc Microstrip Antenna Array. Electromagnetics Applications and Student Innovation 图6偶极子阵列天线辐射方向图 Competition(1W上M,2015 4. Wei-Shiuan Chang, Chang-Fa Yang dB(RealI edaIn Chih-Kai Chang, Wen-Jiao Liao; Liang Cho, Wen-Shyh Chen. Pattern Reconfigurable Millimeter-Wave Antenna Design for 5G Handset Applications. 2016 10th European 2,2e+00 Conlerence on Antennas and Propagation (EuCAP 图7.改进型偶极子阵列天线辐射方向图 5. Yong-Ling Ban, Zhong-Xiang Chen, Zhi Chen, Kai Kang; Joshua Le-Wei Li 由图6可得:偶极子阵列天线的 upled Closely Spaced Heptaband 有源增益为12dB。由7可得:改进 Antenna array for WWaN/LtE Smartphone 型偶极了的阼列天线的有源增益为 Applications. IEEE Antennas and wireless 13dB。由此可得改进型偶极子阵列 P ropagation Letters 天线的辐射增益更高。 6. Hongyu Zhou. Phased Array for Millimeter- Wave Mobile handset. 2014 IEEE Antennas and propagation society 3结论 International Symposium(APSURSD 7. Naser ojaroudiparchin ming she 为了适应现代5G无线通信系统 Gert Frolund Pedersen. Wide-Scan phased 的需求,本文主要对工作在28GHz Array Antenna Fed by Coax-to 的亳米波偶极子贴片天线进行仿真; Microstriplines for 5G Cell Phones. 2016 在其基础上,添加寄生贴片进行改 21st International Conference on microwave Radar and Wireless Communications 进。并且对两种毫米波天线单元进行 (MIKON), 2016 组阵仿真和对比,结果显示:改进型 8. Wenyao Zhai Vahid miraftab: Morris 阵列天线的工作频带更宽,辐射增益 Repeta. Broadband Antenna array with low 更高。 Cost PCB Substrate for 5g Millimeter Wave Applications. Millimeter Waves (GSMM) 参考文献 2015 2314 21994-2017ChinaAcademicJournalElcctronicPublishingHousc.Allrightsrescrved.http://www.cnki.nct

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gllovewyy 骗人吧,材料太少了
2020-12-17
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