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- W2154429248 abstract "Multi-antenna-based multi-input multi-output (MIMO) communications becomes the next revolution in wireless data communications. MIMO has gone through the adoption curve for commercial wireless systems to the point that today, all high throughput commercial standards, i.e. WiMax, Wi-Fi, cellular, etc., have adopted MIMO as part of the optional. This paper is to present our investigations of the behaviors of the MIMO Ultra-Wide-Band-Impulse Radio (UWB-IR) systems, which will contribute to optimal designs for the low-power high-speed data communication over unlicensed bandwidth spanning several GHz, such as IEEE 802.15 families. Our investigations are based on that without requiring any channel estimation procedure we develop and analyze three no coherent transceiver channels based on Poisson model. The simulations for our investigations show that the Poisson distribution of the path arriving will affect the signal-noise ratio (SNR) and that for the Nakagami distributed multipath fading channel the m factor, together with receiver number will impact on the SNR on the MIMO UWB-IR systems." @default.
- W2154429248 created "2016-06-24" @default.
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- W2154429248 date "2009-02-01" @default.
- W2154429248 modified "2023-09-22" @default.
- W2154429248 title "MIMO UWB-IR Noncoherent Transceiver with Poisson Wireless Models" @default.
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- W2154429248 doi "https://doi.org/10.1109/iswpc.2009.4800593" @default.
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