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Vedran Bilas
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2020 – today
- 2024
- [j24]Darko Vasic, Vedran Bilas:
Instrumentation and Measurement Systems: Ecosystems - Insights from NDT and Eddy Current Testing. IEEE Instrum. Meas. Mag. 27(1): 10-17 (2024) - 2023
- [j23]Davorin Ambrus, Vedran Bilas:
Instrumentation and Measurement Systems: From Traditional to Contemporary. IEEE Instrum. Meas. Mag. 26(1): 17-22 (2023) - [j22]Marko Gazivoda, Vedran Bilas:
Energy Autonomous Wake-Up Detectors. IEEE Instrum. Meas. Mag. 26(3): 21-25 (2023) - [j21]Marko Simic
, Davorin Ambrus
, Vedran Bilas
:
Inversion-Based Magnetic Polarizability Tensor Measurement From Time-Domain EMI Data. IEEE Trans. Instrum. Meas. 72: 1-11 (2023) - 2022
- [c35]Fran Penic, Marko Gazivoda, Nikola Miskovic, Vedran Bilas:
Low-Power Level-Crossing Rate-Based Diver Detection System. IEEE SENSORS 2022: 1-4 - [c34]Marko Simic, Davorin Ambrus, Vedran Bilas:
Object Depth Estimation From Line-Scan EMI Data Using Machine Learning. IEEE SENSORS 2022: 1-4 - 2021
- [j20]Vedran Bilas, Vincenzo Piuri:
TC-6-Technical Committee on Emerging Technologies in Measurement: Opening the Doors to Our Measurement Future. IEEE Instrum. Meas. Mag. 24(8): 5-6 (2021) - [j19]Marko Gazivoda
, Vedran Bilas:
Low-Power Sensor Interface with a Switched Inductor Frequency Selective Envelope Detector. Sensors 21(6): 2124 (2021) - [j18]Davorin Ambrus
, Marko Simic
, Darko Vasic
, Vedran Bilas
:
Close-Range Electromagnetic Tracking of Pulse Induction Search Coils for Subsurface Sensing. IEEE Trans. Instrum. Meas. 70: 1-13 (2021) - 2020
- [j17]Dinko Oletic, Sabine Rosner
, Monika Zovko, Vedran Bilas:
Time-frequency features of grapevine's xylem acoustic emissions for detection of drought stress. Comput. Electron. Agric. 178: 105797 (2020) - [j16]Daniel Belega
, Vedran Bilas:
Guest editorial: Instrumentation and measurement in central and Eastern Europe. IEEE Instrum. Meas. Mag. 23(2): 3 (2020) - [j15]Dinko Oletic
, Vedran Bilas:
How thirsty the crops are: Emerging instrumentation for plant-based field measurement of water stress. IEEE Instrum. Meas. Mag. 23(2): 37-46 (2020) - [j14]Davorin Ambrus, Darko Vasic, Vedran Bilas:
Innovating on top of I&M fundamentals for safer humanitarian demining. IEEE Instrum. Meas. Mag. 23(3): 35-41 (2020) - [j13]Marko Gazivoda
, Dinko Oletic
, Carlo Trigona, Vedran Bilas:
Passive Extraction of Signal Feature Using a Rectifier with a Mechanically Switched Inductor for Low Power Acoustic Event Detection. Sensors 20(18): 5445 (2020) - [c33]Davorin Ambrus, Darko Vasic, Vedran Bilas:
A Portable Planar Coil Array for Frequency-Domain Inductive Sensing of Metallic Objects. I2MTC 2020: 1-5 - [c32]Marko Gazivoda
, Dinko Oletic, Vedran Bilas:
Characterization and comparison of envelope detectors for wake-up sensor interfaces at audio frequencies. I2MTC 2020: 1-6 - [c31]Dinko Oletic, Boris Snajder, Vedran Bilas:
Embedded Front-End for Xylem Sap Velocity Measurement with Single Pulse-Heated NTC Probe. I2MTC 2020: 1-6 - [c30]Dorijan Spikic, Darko Vasic, Davorin Ambrus, Ivan Rep, Vedran Bilas:
Towards high frequency electromagnetic induction sensing of soil apparent electrical conductivity. I2MTC 2020: 1-5
2010 – 2019
- 2019
- [j12]Gourab Sen Gupta
, Vedran Bilas
:
Special Section on Sensors Applications Symposium. IEEE Trans. Instrum. Meas. 68(7): 2333-2334 (2019) - [c29]Marko Gazivoda
, Dinko Oletic
, Vedran Bilas, Carlo Trigona:
Measurement of Weak Signal Energy at Acoustic Frequencies by using RMSHI as a Passive Conditioning Circuit. I2MTC 2019: 1-5 - [c28]Dorijan Spikic, Robert Tutic, Darko Vasic, Davorin Ambrus
, Vedran Bilas:
Digital Eddy Current Probe for Tube Nondestructive Testing Using Binary Excitation. I2MTC 2019: 1-5 - [c27]Dinko Oletic
, Vedran Bilas:
Piezoelectric sensor front-end for energy-efficient acquisition of ultrasonic emissions related to water-stress in plants. IEEE SENSORS 2019: 1-4 - [c26]Marko Gazivoda
, Carlo Trigona, Vedran Bilas:
Weak Signal Detection Utilizing a Mechanically Switched Inductor. IWASI 2019: 215-220 - [c25]Dinko Oletic
, Marko Matijascic, Vedran Bilas, Michele Magno
:
Hidden Markov Model-Based Asthmatic Wheeze Recognition Algorithm Leveraging the Parallel Ultra-Low-Power Processor (PULP). SAS 2019: 1-6 - 2018
- [j11]Dinko Oletic
, Vedran Bilas
:
System-Level Power Consumption Analysis of the Wearable Asthmatic Wheeze Quantification. J. Sensors 2018: 6564158:1-6564158:18 (2018) - [j10]Dinko Oletic
, Vedran Bilas
:
Asthmatic Wheeze Detection From Compressively Sensed Respiratory Sound Spectra. IEEE J. Biomed. Health Informatics 22(5): 1406-1414 (2018) - [c24]Ivana Culjak
, Davorin Ambrus
, Marko Marusic, Dorijan Spikic, Darko Vasic, Vedran Bilas:
Eddy current probe for inspection of steel tubes based on rotating field principle. I2MTC 2018: 1-6 - [c23]Dinko Oletic
, Luka Korman, Michele Magno
, Vedran Bilas:
Time-frequency pattern wake-up detector for low-power always-on sensing of acoustic events. I2MTC 2018: 1-6 - 2017
- [c22]Davorin Ambrus
, Darko Vasic
, Vedran Bilas:
Automatic compensation of primary field coupling for a frequency-domain electromagnetic induction sensor. I2MTC 2017: 1-5 - [c21]Davorin Ambrus
, Dorijan Spikic
, Darko Vasic
, Vedran Bilas:
Sensitivity profile of compact inductive sensor for apparent electrical conductivity of topsoil. IEEE SENSORS 2017: 1-3 - [e1]Michele Magno, Fabien Ferrero, Vedran Bilas:
Sensor Systems and Software - 7th International Conference, S-Cube 2016, Sophia Antipolis, Nice, France, December 1-2, 2016, Revised Selected Papers. Lecture Notes of the Institute for Computer Sciences, Social Informatics and Telecommunications Engineering 205, Springer 2017, ISBN 978-3-319-61562-2 [contents] - 2016
- [j9]Boris Snajder, Vana Jelicic, Zoran Kalafatic
, Vedran Bilas
:
Wireless sensor node modelling for energy efficiency analysis in data-intensive periodic monitoring. Ad Hoc Networks 49: 29-41 (2016) - [j8]Michele Magno
, Vana Jelicic, Bruno Srbinovski, Vedran Bilas
, Emanuel M. Popovici, Luca Benini
:
Design, Implementation, and Performance Evaluation of a Flexible Low-Latency Nanowatt Wake-Up Radio Receiver. IEEE Trans. Ind. Informatics 12(2): 633-644 (2016) - [j7]Davorin Ambrus
, Darko Vasic
, Vedran Bilas
:
Robust Estimation of Metal Target Shape Using Time-Domain Electromagnetic Induction Data. IEEE Trans. Instrum. Meas. 65(4): 795-807 (2016) - [c20]Dinko Oletic, Vedran Bilas, Michele Magno, Norbert Felber, Luca Benini:
Low-power multichannel spectro-temporal feature extraction circuit for audio pattern wake-up. DATE 2016: 355-360 - [c19]Liam A. Marsh
, John L. Davidson, Michael D. O'Toole
, Anthony J. Peyton
, Davorin Ambrus, Darko Vasic
, Vedran Bilas:
Spectroscopic identification of anti-personnel mine surrogates from planar sensor measurements. IEEE SENSORS 2016: 1-3 - [c18]Darko Vasic
, Davorin Ambrus
, Vedran Bilas, Pengfei Zhao, Ze Liu:
Analytical modeling of rotating field eddy current sensor for nondestructive testing of tubes. IEEE SENSORS 2016: 1-3 - [c17]Davorin Ambrus, Darko Vasic
, Vedran Bilas
:
Estimating directional magnetic polarizabilities of metallic objects using planar time-domain electromagnetic induction sensor. SAS 2016: 1-5 - [c16]Boris Snajder, Zoran Kalafatic
, Vedran Bilas:
Energy Consumption and Data Amount Reduction Using Object Detection on Embedded Platform. S-CUBE 2016: 118-129 - [c15]Dinko Oletic
, Vedran Bilas:
Comparison of Power-Efficiency of Asthmatic Wheezing Wearable Sensor Architectures. S-CUBE 2016: 149-162 - 2015
- [c14]Vana Jelicic, Michele Magno
, Kiran Chikkadi, Cosmin Roman
, Christofer Hierold, Vedran Bilas
, Luca Benini
:
Towards Internet of Things for event-driven low-power gas sensing using carbon nanotubes. IWASI 2015: 271-276 - [c13]Davorin Ambrus
, Darko Vasic
, Vedran Bilas
:
Model-based target classification using spatial and temporal features of metal detector response. SAS 2015: 1-6 - [c12]Vana Jelicic, Dinko Oletic
, Tomislav Sever, Vedran Bilas
:
Evaluation of MOX gas sensor transient response for low-power operation. SAS 2015: 1-5 - [c11]Dinko Oletic
, Vedran Bilas
:
Design of sensor node for air quality crowdsensing. SAS 2015: 1-5 - [c10]Darko Vasic
, Davorin Ambrus
, Vedran Bilas
:
Stochastic inversion of two-layer soil model parameters from electromagnetic induction data. SAS 2015: 1-5 - 2014
- [j6]Dinko Oletic
, Bruno Arsenali, Vedran Bilas
:
Low-Power Wearable Respiratory Sound Sensing. Sensors 14(4): 6535-6566 (2014) - [c9]Vana Micie, Domagoj Tolic, Vedran Bilas
:
Consensus-based decentralized resource sharing between co-located Wireless Sensor Networks. ISSNIP 2014: 1-6 - [c8]Darko Vasic
, Davorin Ambrus
, Vedran Bilas
:
Simple linear inversion of soil electromagnetic properties from analytical model of electromagnetic induction sensor. SAS 2014: 15-19 - [c7]Aleksandar Antonic, Vedran Bilas
, Martina Marjanovic
, Maja Matijasevic
, Dinko Oletic
, Marko Pavelic
, Ivana Podnar Zarko
, Kresimir Pripuzic
, Lea Skorin-Kapov:
Urban crowd sensing demonstrator: Sense the Zagreb Air. SoftCOM 2014: 423-424 - 2013
- [j5]Darko Vasic
, Vedran Bilas
, Anthony J. Peyton
:
Scaled Experimental Verification of Single-Well Induction Conductivity Measurement Through Nonmagnetic Casing. IEEE Trans. Instrum. Meas. 62(5): 1199-1206 (2013) - 2012
- [j4]Darko Vasic
, Vedran Bilas
:
Application of Stochastic Inversion to Casing Effect Correction in Through Casing Induction Logging. IEEE Trans. Instrum. Meas. 61(5): 1458-1465 (2012) - [c6]Dinko Oletic
, Mateja Skrapec, Vedran Bilas
:
Monitoring Respiratory Sounds: Compressed Sensing Reconstruction via OMP on Android Smartphone. MobiHealth 2012: 114-121 - [c5]Vana Jelicic, Michele Magno
, Davide Brunelli
, Vedran Bilas
, Luca Benini
:
Analytic comparison of wake-up receivers for WSNs and benefits over the wake-on radio scheme. PM2HW2N@MSWiM 2012: 99-106 - 2011
- [c4]Vana Jelicic, Tomislav Razov, Dinko Oletic, Marijan Kuri, Vedran Bilas:
MasliNET: A Wireless Sensor Network based environmental monitoring system. MIPRO 2011: 150-155 - [c3]Dinko Oletic
, Bruno Arsenali, Vedran Bilas
:
Towards Continuous Wheeze Detection Body Sensor Node as a Core of Asthma Monitoring System. MobiHealth 2011: 165-172
2000 – 2009
- 2006
- [j3]Darko Vasic
, Vedran Bilas
, Davorin Ambrus
:
Validation of a coil impedance model for simultaneous measurement of electromagnetic properties and inner diameter of a conductive tube. IEEE Trans. Instrum. Meas. 55(1): 337-342 (2006) - 2005
- [j2]Davorin Ambrus
, Vedran Bilas
, Darko Vasic
:
A digital tachometer for high-temperature telemetry utilizing thermally uprated commercial electronic components. IEEE Trans. Instrum. Meas. 54(4): 1361-1365 (2005) - 2004
- [j1]Darko Vasic
, Vedran Bilas
, Davorin Ambrus
:
Pulsed eddy-current nondestructive testing of ferromagnetic tubes. IEEE Trans. Instrum. Meas. 53(4): 1289-1294 (2004) - 2002
- [c2]Davorin Ambrus
, Vedran Bilas
, Igor Lackovic
:
Transducer interface for multichannel wired telemetry in high temperature environment. ICECS 2002: 219-222
1990 – 1999
- 1997
- [c1]Igor Lackovic, Vedran Bilas, Ante Santic:
A computer based vertical force monitoring and analysis system for gait evaluation. CBMS 1997: 238-243
Coauthor Index

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