Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System

June 2022
Vol-8, Issue-3
Paper ID: 17216
ISSN: 2395-4396
Downloads: 0

Abstract & Details

Research Area
Engineering
Keywords
Key word1:UE(User Equipment) Key word2:BS(Base Station) Key word3:MIMO(Multiple Input Multiple Output) Key word4: SUCRe( Strongest-User Collision Resolution).
Abstract
The Massive MIMO (multiple-input multiple output) technology has a great potential to manage the rapid growth of wireless data traffic. Massive MIMO achieves tremendous spectral efficiency by spatial multiplexing of many tens of user equipment (UEs). These gains are only achieved in practice if many more UEs can connect efficiently to the network than today. As the number of UEs increases, while each UE intermittently accesses the network, the random-access functionality becomes essential to share the limited number of pilots among the UEs. In this paper, we revisit the random-access problem in the Massive MIMO context and develop a reengineered protocol, termed strongest-user collision resolution (SUCRe). An accessing UE asks for a dedicated pilot by sending an uncoordinated random-access pilot, with a risk that other UEs send the same pilot. The favorable propagation of Massive MIMO channels is utilized to enable distributed collision detection at each UE, thereby determining the strength of the contenders’ signals and deciding to repeat the pilot if the UE judges that its signal at the receiver is the strongest. The SUCRe protocol resolves the vast majority of all pilot collisions in crowded urban scenarios and continues to admit UEs efficiently in overloaded networks.

Author Information

# Name Institute / Affiliation
1 SHAIK MOHISIN Vasireddy Venkatadri Institute of Technology
2 SHAREE SHAIK MD Vasireddy Venkatadri Institute of Technology
3 VALLEPU SAI ABHISHEK Vasireddy Venkatadri Institute of Technology
4 YELURI HARISH Vasireddy Venkatadri Institute of Technology
5 K MRUDULA Vasireddy Venkatadri Institute of Technology

How to Cite

Use the following formats to cite this article in your research.

APA Style
MOHISIN, SHAIK, MD, SHAREE SHAIK, ABHISHEK, VALLEPU SAI, HARISH, YELURI, & MRUDULA, K (2022). Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System. International Journal of Advance Research and Innovative Ideas In Education, 8(3), 3366-3375.
MLA Style
MOHISIN, SHAIK, et al. "Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System." International Journal of Advance Research and Innovative Ideas In Education, vol. 8, no. 3, 2022, pp. 3366-3375.
IEEE Style
SHAIK MOHISIN, SHAREE SHAIK MD, VALLEPU SAI ABHISHEK, YELURI HARISH, and K MRUDULA, "Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System," International Journal of Advance Research and Innovative Ideas In Education, vol. 8, no. 3, pp. 3366-3375, 2022.
Vancouver Style
MOHISIN SHAIK, MD SHAREE SHAIK, ABHISHEK VALLEPU SAI, HARISH YELURI, MRUDULA K. Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System. International Journal of Advance Research and Innovative Ideas In Education. 2022;8(3):3366-3375.
Harvard Style
MOHISIN, SHAIK, MD, SHAREE SHAIK, ABHISHEK, VALLEPU SAI, HARISH, YELURI, & MRUDULA, K (2022) 'Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System', International Journal of Advance Research and Innovative Ideas In Education, 8(3), pp. 3366-3375.
Chicago Style
MOHISIN, SHAIK, et al. "Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System." International Journal of Advance Research and Innovative Ideas In Education 8, no. 3 (2022): 3366-3375.
Turabian Style
MOHISIN, SHAIK, et al. "Implementing a Random-Access Protocol for Pilot Allocation In Crowded Massive MIMO System." International Journal of Advance Research and Innovative Ideas In Education 8, no. 3 (2022): 3366-3375.

Export Citation

Related Research

Design and Simulation of Boost Converter Using MOSFET and Diode in LTSpice
SWAPNIL SANJAY BAFANA 2026 ENGINEERING
PDF Unavailable
Smart Gesture-Based Home Security System using GSM Technology
Palak Ambule et al. 2026 Electronics & Communication Engineering
PDF Unavailable
Design and Performance Evaluation of a 2×2 Circular Microstrip Patch MIMO Antenna Array for Sub-6 GHz 5G Applications
M Manaswi et al. 2026 Electronics and Communication Engineering
PDF Unavailable
DESIGN AND PERFORMANCE ANALYSIS OF FREQUENCY RECONFIGURABLE PLANAR MONOPOLE ANTENNAS FOR WIRELESS APPLICATIONS
Dr.Chetan S et al. 2025 ELECTRONICS AND COMMUNICATION ENGINEERING
PDF Unavailable
BI-DIRECTIONAL WIRELESS CHARGING SYSTEM FOR EV
ABISHEK M et al. 2025 ELECTORNICE AND COMMUNICATION ENGINEERING
PDF Unavailable
Robust And Efficient Phase Estimation in legged Robots Via Signal Imaging And Deep Neural Networks
Jayadevappa R.S et al. 2025 Electronics and Communication Engineering
PDF Unavailable