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Giuseppe Caire

Researcher at Technical University of Berlin

Publications -  909
Citations -  44469

Giuseppe Caire is an academic researcher from Technical University of Berlin. The author has contributed to research in topics: MIMO & Communication channel. The author has an hindex of 82, co-authored 825 publications receiving 40344 citations. Previous affiliations of Giuseppe Caire include Free University of Berlin & Guangxi Normal University.

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A Novel Transformation Approach of Shared-link Coded Caching Schemes for Multiaccess Networks

TL;DR: In this paper, a novel transformation approach is proposed to smartly extend the Hachem et al. scheme to the multiaccess caching system, such that the load expression of the scheme by HAChem this paper for the case where $L$ divides $K$, remains achievable in full generality.
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WiFi-Based Channel Impulse Response Estimation and Localization via Multi-Band Splicing

TL;DR: This work proposes a multi-band splicing method that increases channel bandwidth by combining CSI data across multiple frequency bands and develops a per-band processing algorithm that is able to estimate the distortion parameters and remove them to yield the “clean” CSI.
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Coarse Network Coding: A Simple Relay Strategy to Resolve Interference

TL;DR: In this paper, it was shown that forwarding an even/odd indicator bit for a scalar quantization of a relay observation recovers 1 bit of information at the two destinations in a noiseless interference channel where interference is treated as noise.
Proceedings ArticleDOI

Novel Converse for Device-to-Device Demand-Private Caching with a Trusted Server

TL;DR: The main contribution of this paper is a novel converse bound for the studied model where users may collude and yet cannot infer what files the remaining users have demanded, which is the first that genuinely accounts for the demand privacy constraint.
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Capacity and Degree-of-Freedom of OFDM Channels with Amplitude Constraint

TL;DR: In this paper, the capacity and degree-of-freedom (DoF) scaling for the continuous-time amplitude limited AWGN channels in radio frequency (RF) and intensity modulated optical communication (OC) channels were studied.