Abstract:
The benefits of exploiting a triangular-lattice arrays employed in massive MIMO systems is addressed. Performance comparison with respect to a square lattice planar array...Show MoreMetadata
Abstract:
The benefits of exploiting a triangular-lattice arrays employed in massive MIMO systems is addressed. Performance comparison with respect to a square lattice planar array has been carried out within 5G NR n257 and n258 frequency band. Particular attention is paid to illustrate the effect of the array lattice at the system level by evaluating significant figure of merits such as the Sum Spectral Efficiency (SSE), Signal to Interference Ratio (SIR) and array gain. The observed advantages offered by the triangular arrangement of antenna elements in terms of improved gain and SSE as well as the thermal aspect make it appealing for massive MIMO 5G applications.
Date of Conference: 22-26 March 2021
Date Added to IEEE Xplore: 27 April 2021
ISBN Information:
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- IEEE Keywords
- Index Terms
- Hexagonal Lattice ,
- Spectral Efficiency ,
- Massive Multiple-input Multiple-output ,
- Figure Of Merit ,
- Antenna Array ,
- Square Lattice ,
- Planar Array ,
- Massive Applications ,
- Array Gain ,
- Signal-to-interference Ratio ,
- Thermal Aspects ,
- Minimum Distance ,
- Line-of-sight ,
- Base Station ,
- Phased Array ,
- Radiation Pattern ,
- Power Amplifier ,
- Array Design ,
- Mutual Coupling ,
- Beam Steering ,
- Half-power Beamwidth ,
- Time-frequency Resource ,
- Massive Array ,
- Simultaneous Users
- Author Keywords
- 5G ,
- massive MIMO ,
- multi-beam ,
- phased array
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Hexagonal Lattice ,
- Spectral Efficiency ,
- Massive Multiple-input Multiple-output ,
- Figure Of Merit ,
- Antenna Array ,
- Square Lattice ,
- Planar Array ,
- Massive Applications ,
- Array Gain ,
- Signal-to-interference Ratio ,
- Thermal Aspects ,
- Minimum Distance ,
- Line-of-sight ,
- Base Station ,
- Phased Array ,
- Radiation Pattern ,
- Power Amplifier ,
- Array Design ,
- Mutual Coupling ,
- Beam Steering ,
- Half-power Beamwidth ,
- Time-frequency Resource ,
- Massive Array ,
- Simultaneous Users
- Author Keywords
- 5G ,
- massive MIMO ,
- multi-beam ,
- phased array