Search Results for author: David W. Matolak

Found 7 papers, 0 papers with code

Wireless Connectivity and Localization for Advanced Air Mobility Services

no code implementations21 Feb 2022 Priyanka Sinha, Md Moin Uddin Chowdhury, Ismail Guvenc, David W. Matolak, Kamesh Namuduri

By serving as an analog to traffic signal lights, communication signaling for drone to drone communications holds the key to the success of advanced air mobility (AAM) in both urban and rural settings.

EMR: A New Metric to Assess the Resilience of Directional mmWave Channels to Blockages

no code implementations30 Sep 2020 Fatih Erden, Ozgur Ozdemir, Ismail Guvenc, David W. Matolak

Millimeter-wave (mmWave) communication systems require narrow beams to increase communication range.

DFT-spread-OFDM Based Chirp Transmission

no code implementations9 Aug 2020 Alphan Sahin, Nozhan Hosseini, Hosseinali Jamal, Safi Shams Muhtasimul Hoque, David W. Matolak

In this study, we propose a framework for chirp-based communications by exploiting discrete Fourier transform-spread orthogonal frequency division multiplexing (DFT-s-OFDM).

Multicarrier Spectral Shaping for Non-White Interference Channels: Application to L-band Aviation Channels

no code implementations23 May 2020 Hosseinali Jamal, David W. Matolak

In this paper, we investigate an algorithm to attain additive white Gaussian noise (AWGN) performance in spectrally non-white channels, using multicarrier communications, i. e., orthogonal frequency division multiplexing (OFDM) and filterbank multicarrier (FBMC).

Advanced Physical-Layer Technologies in VHF Data Link Communications

no code implementations23 May 2020 Hosseinali Jamal, David W. Matolak

Thus, APSK has become of interest for satellite communications, as well as VHF communications in A-VDL.

Nonlinear Quasi-Synchronous Multi User Chirp Spread Spectrum Signaling

no code implementations21 Sep 2019 Nozhan Hosseini, David W. Matolak

Multi user orthogonal chirp spread spectrum (OCSS) can improve the spectral inefficiency of chirp spread spectrum (CSS) but is only feasible with perfect synchronism and without any channel dispersion.

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