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W-Type Hexaferrite Film-Enabled Magnetic Resonance Engineering for Tailored Upper Stop-Band Suppression in Millimeter-Wave Bandpass Filters. [PDF]
Koo H +7 more
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Design of a planar gradient-index dielectric lens for arbitrary point-to-point beam focusing using critical-angle theory. [PDF]
Taskhiri MM, Moradi M, Fakhte S.
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Millimeter Wave Vehicular Communications: A Survey
Foundations and TrendsĀ® in Networking, 2016Future vehicles will require massive sensing capability. Leveraging only onboard sensors, though, is challenging in crowded environments where the sensing field-of-view is obstructed. One potential solution is to share sensor data among the vehicles and infrastructure.
Vutha Va +3 more
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Millimeter Wave Communication: A Comprehensive Survey
IEEE Communications Surveys & Tutorials, 2018Millimeter wave (mmWave) communication has raised increasing attentions from both academia and industry due to its exceptional advantages. Compared with existing wireless communication techniques, such as WiFi and 4G, mmWave communications adopt much higher carrier frequencies and thus come with advantages including huge bandwidth, narrow beam, high ...
Xiong Wang 0006 +6 more
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Multipath grouping for millimeter-wave communications
2013 IEEE Global Communications Conference (GLOBECOM), 2013In millimeter-wave communications (MMWC), multipath components (MPCs) have different steering angles and independent fadings. Park and Pan recently proposed a simple scheme for both transmitter and receiver to concurrently beamform towards multiple steering angles of MPCs to achieve both array gain and diversity gain.
Zhenyu Xiao +3 more
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Millimeter-Wave Vehicular Communications
2022This chapter works on presenting a background overview associated with vehicular communications and networking. The first part focuses on reviewing the recent advancements and progress booming in vehicular networking and standardization. As existing wireless solutions cannot guarantee safe, swift, and ubiquitous high-volume data transfer in future ...
Cheng, Xiang +2 more
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Millimeter waves for communications
[Conference Digest] International Conference on Millimeter Wave and Far-Infrared Technology: ICMWFT '90, 2005While atmospheric effects limit achievable ranges, other factors such as crowding at lower frequencies, larger available bandwidths and beneficial aspects of atmospheric absorption have resulted in increased use of millimeter waves for communications. Satellite, air-to-air, terrestrial point-to-point and local/metropolitan area network com munications ...
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Wind Sensing by Millimeter Wave Communications
2019 IEEE International Symposium on Dynamic Spectrum Access Networks (DySPAN), 2019Millimeter wave is a core technology in the 5G cellular communication networks because of its large bandwidth and high data transmission rate. In practice, outdoor fixtures of millimeter wave devices may be affected by oscillations due to wind, thus causing significant frequency/phase change in the communication signal. It can be interpreted as Doppler
Zhiyang Zhang +3 more
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Millimeter Wave Communication Technology
2021Millimeter-wave plays an indispensable role in the new generation of mobile communication because of its abundance of unexplored resources, which can be used to meet the requirements of greater bandwidth and ultra-high data rate. This chapter firstly introduces the development, characteristics, and applications of millimeter-wave.
Aart W. Kleyn, Wei Luo, Bo Yin
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Joint Communication and Localization in Millimeter Wave Networks
IEEE Journal of Selected Topics in Signal Processing, 2021Joint communication and localization will be a key in beyond 5G networks for emerging context-aware applications such as Internet-of-Things and autonomous vehicles. In particular, millimeter wave (mmWave) networks using a massive number of antennas and large bandwidth are considered for high-rate communication and high-accuracy localization.
Girim Kwon +3 more
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