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Downlink throughput enhancement of an OFDMA cellular system with closed-access indoor relays
Published in
2013
Pages: 350 - 354
Abstract
We propose user-deployable closed-access indoor relays for throughput improvements in the downlink of LTE (long-term evolution) cellular system. The relays are assumed to be placed proximate to the destination user equipments (UEs). We propose a two-hop non-regenerative relaying scheme where the relay, equipped with multiple antennas, performs optimum combining to maximize the SINR (signal-to-interference-plus-noise ratio) before forwarding to a UE. The relaying is performed in a concurrent manner, where the base station (BS) transmits to some other receiver simultaneously when the relay is transmitting, and is therefore spectrally efficient. In order that the users served by a BS do not experience additional co-channel interference (CCI) because of the transmissions of the closed-access relays, we present an interference management scheme that can be implemented with minimal changes in the scheduling algorithm of a BS. Computer simulations, performed with large-scale deployment of indoor relays in the LTE framework, show that the UEs served by the relays see an improvement of over 100% in their respective throughputs, while the average cellular throughput improves by 24% when compared with a baseline system without relays. Also, the UEs served by the BSs do not experience any loss in their throughputs. © 2013 IEEE.
About the journal
JournalIEEE Workshop on Signal Processing Advances in Wireless Communications, SPAWC
Open AccessNo
Concepts (17)
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    COCHANNEL INTERFERENCE (CCI)
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    INDOOR RELAYS
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    Interference management
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    LARGE-SCALE DEPLOYMENT
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    Lte
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    NON-REGENERATIVE RELAYING
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    Signal to interference plus noise ratio
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    Throughput enhancement
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    Cellular arrays
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    Cellular telephone systems
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    Computer simulation
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    Mobile telecommunication systems
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    Signal interference
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    Spurious signal noise
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    Throughput
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    Wireless telecommunication systems
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    Frequency division multiple access