17 citations · 28 across the 3 of their papers we have counts for
8 papers
Wireless Secrecy in Large-Scale Networks
Pedro C. Pinto, Joao Barros, Moe Z. Win
The ability to exchange secret information is critical to many commercial, governmental, and military networks. The intrinsically secure communications graph (iS-graph) is a random…
Percolation and Connectivity in the Intrinsically Secure Communications Graph
Pedro C. Pinto, Moe Z. Win
The ability to exchange secret information is critical to many commercial, governmental, and military networks. The intrinsically secure communications graph (iS-graph) is a random…
Techniques for Enhanced Physical-Layer Security
Pedro C. Pinto, Joao Barros, Moe Z. Win
Information-theoretic security--widely accepted as the strictest notion of security--relies on channel coding techniques that exploit the inherent randomness of propagation channel…
Continuum Percolation in the Intrinsically Secure Communications Graph
Pedro C. Pinto, Moe Z. Win
The intrinsically secure communications graph (iS-graph) is a random graph which captures the connections that can be securely established over a large-scale network, in the presen…
A Unifying Framework for Local Throughput in Wireless Networks
Pedro C. Pinto, Moe Z. Win
With the increased competition for the electromagnetic spectrum, it is important to characterize the impact of interference in the performance of a wireless network, which is tradi…
Communication in a Poisson Field of Interferers -- Part II: Channel Capacity and Interference Spectrum
Pedro C. Pinto, Moe Z. Win
In Part I of this paper, we presented a mathematical model for communication subject to both network interference and noise, where the interferers are scattered according to a spat…