Arjun Nadh
Indian Institute of Technology Madras
8 Papers
17 Citations
Arjun Nadh is an academic researcher from Indian Institute of Technology Madras. The author has contributed to research in topics: Communication channel & Signal. The author has an hindex of 3, co-authored 8 publications.
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Papers
A Taylor Series Approximation of Self-Interference Channel in Full-Duplex Radios
TL;DR: This paper shows that the self-interference channel in an indoor environment can be effectively modeled as $H(f)=C_{0} - C_{1}f$ in the frequency domain, and proposes novel low-complexity designs for self- interference cancellation.
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A Linearization Technique for Self-Interference Cancellation in Full-Duplex Radios
TL;DR: It is shown that the self-interference channel in an indoor environment can be effectively modelled as $H(f)=C_0 + C_1f$ in the frequency domain, irrespective of the multipath environment, and linearization results in a simpler SI filter model in the digital domain due to dimensionality reduction of the channel parameters.
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A Taylor series approximation technique for self-interference cancellation in full-duplex radios
Arjun Nadh,Ankit Sharma,Sankaran Aniruddhan,Radha Krishna Ganti +3 more
- 04 Mar 2016
TL;DR: In this paper, the authors proposed a novel SI cancellation technique based on Taylor series expansion of the delayed signal that results in linearizing the delayed self-interference component of the transmitted signal.
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Self-interference cancellation in full-duplex wireless devices: A survey
TL;DR: This paper focuses on the various RF and baseband self-interference cancellation techniques for realising an ideal full-duplex node.
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Self-Interference Channel Characterization in a Full-Duplex System Using LTE Base Station Antenna
Arjun Nadh,Rakshith Jagannath,Radha Krishna Ganti,P. H. Rao +3 more
- 01 Dec 2018
TL;DR: The outdoor measurements indicate that the major component in the PDP is contributed by antenna coupling that do not vary significantly over time, and for a commercial off-the-shelf antenna, separate antenna offers no added advantage in isolation compared to shared antenna architecture.
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