Here, we propose a large-scale 2-bit millimeter-wave programmable metasurface to build an integrated smart base station framework for 6G communications. The meta-array is
Index Terms—Millimeter wave antenna, dual polarization, patch antenna, micro base station antenna. I. INTRODUCTION In recent years, due to our continuous improvement
This chapter starts with the background of millimeter-wave (mmWave) communications and introduces the advantages and limitations of incorporating mmWave in
Implementing millimeter wave (mmWave) frequency bands is an indispensable catalyst for revolutionizing the perfor-mance of 5G and beyond. By harnessing the power of
The Compact Macro 5G RAN is based on FSM 5G RAN design technology, featuring up to 256 built-in micro antenna modules, 60dBm peak equivalent isotropically
A novel compact 5G multiple-input-multiple-output (MIMO) base station (5G-BS) is introduced for enhancing communications in underground mine environments. The structure
Here, we propose a large-scale 2-bit millimeter-wave programmable metasurface to build an integrated smart base station framework for 6G communications. The meta-array is
1 Co-Existing with Sub-6 GHz Networks2 Modeling The Random Blockage3 Stochastic Geometry-Based AnalysisAs has been discussed in Sect. 1.1, the high sensitivity to blockage effects is one of the distinguishable features of mmWave channel. Generally, a communication link is either LoS or NLoS, depending on whether the BS is visible to the corresponding user or not. Measurement results have validated that different path loss and small-scale fading mode...See more on link.springer Oxford Academic
Here, we propose a large-scale 2-bit millimeter-wave programmable metasurface to build an integrated smart base station framework for 6G communications. The meta-array is
Abstract—We propose a blockage prediction and fast base station (BS) handover (BP-FBSH) scheme based on the ref-erence signal received power (RSRP) of the mobile
Another challenge is the increased power consumption of mmWBSs compared to traditional base stations. This is due to the high data rates and advanced signal processing
One of the primary technique in next generation cellular system is milimeter wave (mmWave) communications, which is the spectral frontier for wireless communication systems
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