Coverage Analysis of Physical Layer Network Coding in Massive Mimo Systems

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Open Access Color

HYBRID

Green Open Access

Yes

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19

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2

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No
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Top 10%
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Average
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Top 10%

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Abstract

Wireless networks are prone to interference due to their broadcast nature. In the design of most of the traditional networks, this broadcast nature is perceived as a performance-degrading factor. However, Physical Layer Network Coding (PNC) exploits this broadcast nature by enabling simultaneous transmissions from different sources and thereby enhances the performance of the wireless networks with respect to improvement in spectral efficiency, coverage, latency and security of the system. For fifth generation (5G) networks and beyond, massive multiple input multiple output (MIMO) is considered as a key physical layer technology. Thus, its combination with PNC can significantly enhance the performance of the network, facilitating capacity-coverage improvement, among other benefits. While the bit error rate performance of multiuser massive MIMO-PNC systems through linear detection has been investigated extensively, their coverage probability for a given target signal-to-noise ratio has not been explored yet. In this paper, we derive a closed form expression for coverage probability in PNC based multiuser massive MIMO systems employing zero-forcing equalization. Both theoretical and simulation results are provided for different number of users and antennas in the multiuser massive MIMO-PNC communications systems.

Description

Keywords

Relays, Network coding, Signal to noise ratio, Massive MIMO, Physical layer, Interference, Closed-form solutions, Physical layer network coding (PNC)

Fields of Science

0508 media and communications, 05 social sciences, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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OpenCitations Citation Count
6

Volume

70

Issue

2

Start Page

1480

End Page

1487
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Scopus : 8

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Mendeley Readers : 5

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