← Search

Petar Popovski

5 accepted papers

2024

Multi-Sensor Multi-Scan Radar Sensing of Multiple Extended Targets

ICASSP 2024accepted

We propose an efficient solution to the state estimation problem in multi-scan multi-sensor multiple extended target sensing scenarios. We first model the measurement process by a doubly inhomogeneous-generalized shot noise Cox process and then estimate the parameters using a jump Markov chain Monte…

Cited by 0SourceScholar
2023

mmWave Wi-Fi Trajectory Estimation with Continuous-Time Neural Dynamic Learning

ICASSP 2023accepted

We leverage standards-compliant beam training measurements from commercial-of-the-shelf (COTS) 802.11ad/ay devices for localization of a moving object. Two technical challenges need to be addressed: (1) the beam training measurements are intermittent due to beam scanning overhead control and content…

Cited by 0SourceScholar
2021

Globally Optimal Beamforming for Rate Splitting Multiple Access

ICASSP 2021accepted

We consider globally optimal precoder design for rate splitting multiple access in Gaussian multiple-input single-output downlink channels with respect to weighted sum rate and energy efficiency maximization. The proposed algorithm solves an instance of the joint multicast and unicast beamforming pr…

Cited by 0SourceScholar
2018

Short Packet Structure for Ultra-Reliable Machine-Type Communication: Tradeoff between Detection and Decoding

ICASSP 2018accepted

Machine-type communication requires rethinking of the structure of short packets due to the coding limitations and the significant role of the control information. In ultra-reliable low-latency communication (URLLC), it is crucial to optimally use the limited degrees of freedom (DoFs) to send data a…

Cited by 21SourceScholar
2016

Random access for massive MIMO systems with intra-cell pilot contamination

ICASSP 2016accepted

Massive MIMO systems, where the base stations are equipped with hundreds of antenna elements, are an attractive way to attain unprecedented spectral efficiency in future wireless networks. In the "classical" massive MIMO setting, the terminals are assumed fully loaded and a main impairment to the pe…

Cited by 0SourceScholar