Showing 50 publications by Steve Collins
Fluorescent antenna based on Förster resonance energy transfer (FRET) for optical wireless communications
He C, Collins S & Murata H (2024), Optics Express, 32(10), 17152
Capillary-based fluorescent antenna for visible light communications.
He C, Collins S & Murata H (2023), Optics express, 31(11), 17716-17730
A comparison of VLC receivers that incorporate two different SiPMs
Ahmed Z, Ali W, Faulkner G & Collins S (2023), IEEE Photonics Journal, 15(2)
A roadmap for Gigabit to terabit optical wireless communications receivers
Matthews W & Collins S (2023), Sensors, 23(3)
Figure data for "A roadmap for Gigabit to Terabit optical wireless communications receivers"
Matthews W & Collins S (2023)
A Two-Stage Fluorescent Antenna for Visible Light Communication Uplinks
He C & Collins S (2023), IEEE Photonics Technology Letters, 35(21), 1190-1193
BibTeX
@article{atwostagefluore-2023/1,
title={A Two-Stage Fluorescent Antenna for Visible Light Communication Uplinks},
author={He C & Collins S},
journal={IEEE Photonics Technology Letters},
volume={35},
pages={1190-1193},
publisher={Institute of Electrical and Electronics Engineers (IEEE)},
year = "2023"
}
An experimental and numerical study of the impact of ambient light of SiPMS in VLC receivers
Matthews W & Collins S (2022), Photonics, 9(12)
The negative impact of anode resistance on SiPMs as VLC receivers
Matthews W & Collins S (2022), 2022 17th Conference on Ph.D Research in Microelectronics and Electronics (PRIME), 41-44
Signal demodulation using a radial basis function neural network (RBFNN) in a silicon photomultiplier-based visible light communication system
He C & Collins S (2022), IEEE Photonics Journal, 14(4)
BibTeX
@article{signaldemodulat-2022/6,
title={Signal demodulation using a radial basis function neural network (RBFNN) in a silicon photomultiplier-based visible light communication system},
author={He C & Collins S},
journal={IEEE Photonics Journal},
volume={14},
number={7337814},
publisher={IEEE},
year = "2022"
}
A digital pre-equalizer for optical wireless links
Surampudi A, Singh R, Riaz A, Ali W, Faulkner G et al. (2022), Journal of Lightwave Technology, 40(4), 961-967
DCO-OFDM channel sounding with a SiPM receiver
Matthews W, He C & Collins S (2021), 2021 IEEE Photonics Conference (IPC): Proceedings
The impact of the length of fluorescent fiber concentrators on the performance of VLC receivers
Ali W, Ahmed Z, Matthews W & Collins S (2021), IEEE Photonics Technology Letters, 33(24), 1451-1454
BibTeX
@article{theimpactofthel-2021/9,
title={The impact of the length of fluorescent fiber concentrators on the performance of VLC receivers},
author={Ali W, Ahmed Z, Matthews W & Collins S},
journal={IEEE Photonics Technology Letters},
volume={33},
pages={1451-1454},
publisher={IEEE},
year = "2021"
}
Giga-bit transmission between an eye-safe transmitter and wide field-of-view SiPM receiver
Ali W, Faulkner G, Ahmed Z, Matthews W & Collins S (2021), IEEE Access, 9, 154225-154236
A wide field-of-view receiver that incorporates fluorescent fibers and a SiPM
Ali W, Matthews W, Faulkner G & Collins S (2021)
BibTeX
@inproceedings{awidefieldofvie-2021/9,
title={A wide field-of-view receiver that incorporates fluorescent fibers and a SiPM},
author={Ali W, Matthews W, Faulkner G & Collins S},
booktitle={2nd Optical Wireless Communication Conference (OWCC 2021)},
year = "2021"
}
Raised cosine pulse shaping for pre-equalized optical wireless links
Surampudi A, Singh R, Faulkner G, O'Brien D & Collins S (2021), IEEE Photonics Technology Letters, 33(16), 912-915
A Gigabit VLC receiver that incorporates a fluorescent antenna and a SiPM
Ali W, Manousiadis P, O'Brien D, Turnbull G, Samuel I et al. (2021), Journal of Lightwave Technology, 40(16), 5369-5375
BibTeX
@article{agigabitvlcrece-2021/7,
title={A Gigabit VLC receiver that incorporates a fluorescent antenna and a SiPM},
author={Ali W, Manousiadis P, O'Brien D, Turnbull G, Samuel I et al.},
journal={Journal of Lightwave Technology},
volume={40},
pages={5369-5375},
publisher={IEEE},
year = "2021"
}
A 3.45 Gigabits/s SiPM-based OOK VLC receiver
Matthews W, Ahmed Z, Ali W & Collins S (2021), IEEE Photonics Technology Letters, 33(10), 487-490
Inter-symbol interference and silicon photomultiplier VLC receivers in ambient light
Matthews W, Ali W, Ahmed Z, Faulkner G & Collins S (2021), IEEE Photonics Technology Letters, 33(9), 449-452
BibTeX
@article{intersymbolinte-2021/3,
title={Inter-symbol interference and silicon photomultiplier VLC receivers in ambient light},
author={Matthews W, Ali W, Ahmed Z, Faulkner G & Collins S},
journal={IEEE Photonics Technology Letters},
volume={33},
pages={449-452},
publisher={Institute of Electrical and Electronics Engineers},
year = "2021"
}
Silicon photomultiplier receivers and future VLC systems
Ali W, Faulkner G, Ahmed Z, Matthews W, O'Brien D et al. (2021), Proceedings of the IEEE Globecom Workshops (GC Wkshps 2020), 1-5
Signal pre-equalization in a silicon photomultiplier-based optical OFDM system
He C, Ahmed Z & Collins S (2021), IEEE Access, 9, 23344-23356
A wide field of view VLC receiver for smartphones
Riaz A & Collins S (2020), 00, 1-4
A SiPM-based VLC receiver for 3.45 Gigabits/s communication using OOK modulation
Matthews W, Ahmed Z, Ali W & Collins S (2020)
'Severe malnutrition': thinking deeply, communicating simply
Kerac M, McGrath M, Connell N, Kompala C, Moore WH et al. (2020), BMJ Global Health, 5(11)
The relationships between the amplitude of receiver output voltage and the maximum achievable OOK data rate
Riaz A, Faulkner G, O'Brien D & Collins S (2020), 43
A SiPM-based VLC Receiver for Gigabit communication using OOK Modulation
Ahmed Z, Singh R, Ali W, Faulkner G, O'Brien D et al. (2020), IEEE Photonics Technology Letters, 32(6), 317-320
BibTeX
@article{asipmbasedvlcre-2020/2,
title={A SiPM-based VLC Receiver for Gigabit communication using OOK Modulation},
author={Ahmed Z, Singh R, Ali W, Faulkner G, O'Brien D et al.},
journal={IEEE Photonics Technology Letters},
volume={32},
pages={317-320},
publisher={Institute of Electrical and Electronics Engineers (IEEE)},
year = "2020"
}
Optical antennas for wavelength division multiplexing in visible light communications beyond the étendue limit
Manousiadis P, Chun H, Rajbhandari S, Vithanage D, Mulyawan R et al. (2019), Advanced Optical Materials, 8(4)
BibTeX
@article{opticalantennas-2019/12,
title={Optical antennas for wavelength division multiplexing in visible light communications beyond the étendue limit},
author={Manousiadis P, Chun H, Rajbhandari S, Vithanage D, Mulyawan R et al.},
journal={Advanced Optical Materials},
volume={8},
number={1901139},
publisher={Wiley},
year = "2019"
}
A Slab Fluorescent Concentrator for Visible Light Communications
Riaz A & Collins S (2019), 00, 1-4
A fluorescent antenna for white light visible light communications
Riaz A, Faulkner G & Collins S (2019), 2019 Global LIFI Congress (GLC)
A shot-noise limited 420 Mbps visible light communication system using commerical off- the-shelf silicon photomultiplier (SiPM)
Ahmed Z, Zhang L, Faulkner G, O'Brien D & Collins S (2019), 2019 IEEE International Conference on Communications Workshops (ICC Workshops)
The future prospects for SiPM based receivers for visible light communications
Zhang L, Chun H, Ahmed Z, Faulkner G, O'Brien D et al. (2019), IEEE/OSA Journal of Lightwave Technology, 37(17), 4367-4374
BibTeX
@article{thefutureprospe-2019/6,
title={The future prospects for SiPM based receivers for visible light communications},
author={Zhang L, Chun H, Ahmed Z, Faulkner G, O'Brien D et al.},
journal={IEEE/OSA Journal of Lightwave Technology},
volume={37},
pages={4367-4374},
publisher={IEEE},
year = "2019"
}
An optical transceiver powered by on-chip solar cells for IoT smart dusts with optical wireless communications
Liu J, Faulkner G, Choubey B, Collins S & O'Brien DC (2018), IEEE Internet of Things Journal
BibTeX
@article{anopticaltransc-2018/11,
title={An optical transceiver powered by on-chip solar cells for IoT smart dusts with optical wireless communications},
author={Liu J, Faulkner G, Choubey B, Collins S & O'Brien DC},
journal={IEEE Internet of Things Journal},
publisher={IEEE},
year = "2018"
}
Exploitation of magnetic dipole resonances in metal–insulator–metal plasmonic nanostructures to selectively filter visible light
Pinton N, Grant J, Collins S & Cumming DRS (2018), ACS Photonics, 5(4), 1250-1261
BibTeX
@article{exploitationofm-2018/2,
title={Exploitation of magnetic dipole resonances in metal–insulator–metal plasmonic nanostructures to selectively filter visible light},
author={Pinton N, Grant J, Collins S & Cumming DRS},
journal={ACS Photonics},
volume={5},
pages={1250-1261},
publisher={American Chemical Society},
year = "2018"
}
A comparison of APD and SPAD based receivers for visible light communications
Zhang L, Chitnis D, Chun H, Rajbhandari S, Faulkner G et al. (2018), Journal of Lightwave Technology, 36(12), 2435-2442
BibTeX
@article{acomparisonofap-2018/2,
title={A comparison of APD and SPAD based receivers for visible light communications},
author={Zhang L, Chitnis D, Chun H, Rajbhandari S, Faulkner G et al.},
journal={Journal of Lightwave Technology},
volume={36},
pages={2435-2442},
publisher={Institute of Electrical and Electronics Engineers},
year = "2018"
}
Ultra-Wide Coverage VLC System with Alignment-Free Receiver
Quintana C, Chun H, Mulyawan R, Faulkner G, Collins S et al. (2018), 1-4
Efficient Pulse Amplitude Modulation for SPAD-based Receivers
Zhang L, Chun H, Faulkner G, O'Brien D & Collins S (2018), 1-5
A Tunable Passband Logarithmic Photodetector for IoT Smart Dusts
Liu J, Faulkner G, Choubey B, Collins S & O’Brien DC (2018), IEEE Sensors Journal, 18(13), 5321-5328
BibTeX
@article{atunablepassban-2018/1,
title={A Tunable Passband Logarithmic Photodetector for IoT Smart Dusts},
author={Liu J, Faulkner G, Choubey B, Collins S & O’Brien DC},
journal={IEEE Sensors Journal},
volume={18},
pages={5321-5328},
publisher={Institute of Electrical and Electronics Engineers (IEEE)},
year = "2018"
}
A comparison between the sensitivities of VLC receivers containing an off-the-shelf SPAD array and an APD
Zhang L, Chun H, Faulkner G, O'Brien D & Collins S (2017), 2017 IEEE Photonics Conference (IPC), 27-28
A Method for Determining the Response of Adaptive Multiple Reset Wide Dynamic Range Pixels
Shaharom M & Collins S (2017), 2017 IEEE 15TH INTERNATIONAL NEW CIRCUITS AND SYSTEMS CONFERENCE (NEWCAS), 349-352
BibTeX
@inproceedings{amethodfordeter-2017/6,
title={A Method for Determining the Response of Adaptive Multiple Reset Wide Dynamic Range Pixels},
author={Shaharom M & Collins S},
booktitle={2017 IEEE 15TH INTERNATIONAL NEW CIRCUITS AND SYSTEMS CONFERENCE (NEWCAS)},
pages={349-352},
year = "2017"
}
MIMO visible light communications using a wide field-of-view fluorescent concentrator
Mulyawan R, Chun H, Gomez Diaz A, Rajbhandari S, Faulkner G et al. (2017), IEEE Photonics Technology Letters, 29(3), 306-309
BibTeX
@article{mimovisibleligh-2017/1,
title={MIMO visible light communications using a wide field-of-view fluorescent concentrator},
author={Mulyawan R, Chun H, Gomez Diaz A, Rajbhandari S, Faulkner G et al.},
journal={IEEE Photonics Technology Letters},
volume={29},
pages={306-309},
publisher={IEEE},
year = "2017"
}
A comparative study of optical concentrators for visible light communications
Mulyawan R, Gomez Diaz A, Chun H, Rajbhandari S, Manousiadis PP et al. (2017), Broadband Access Communication Technologies XI
The Design of a Low-Cost adiometric dystem for photovoltaic solar cells
López-Álvarez MA, Collins S & Hernández-Andrés J (2016), IEEE Journal of Photovoltaics, 6(6), 1605-1610
BibTeX
@article{thedesignofalow-2016/10,
title={The Design of a Low-Cost adiometric dystem for photovoltaic solar cells},
author={López-Álvarez MA, Collins S & Hernández-Andrés J},
journal={IEEE Journal of Photovoltaics},
volume={6},
pages={1605-1610},
publisher={Institute of Electrical and Electronics Engineers},
year = "2016"
}
Wide field of view fluorescent antenna for visible light communications beyond the étendue limit
Manousiadis PP, Rajbhandari S, Mulyawan R, Vithanage DA, Chun H et al. (2016), Optica, 3(7), 702-706
BibTeX
@article{widefieldofview-2016/6,
title={Wide field of view fluorescent antenna for visible light communications beyond the étendue limit},
author={Manousiadis PP, Rajbhandari S, Mulyawan R, Vithanage DA, Chun H et al.},
journal={Optica},
volume={3},
pages={702-706},
publisher={Optical Society of America},
year = "2016"
}
An Integrating Wide Dynamic Range nMOS Pixel with a Logarithmic Reference Voltage Generator
Shaharom M & Collins S (2016), 1918-1921
Recent progress in plasmonic colour filters for image sensor and multispectral applications
Pinton N, Grant J, Choubey B, Cumming D & Collins S (2016), Proceedings of SPIE--the International Society for Optical Engineering, 9884, 988438-988438-12
Optical receiver front end for optically powered smart dust
Liu J, Zhou Y, Faulkner GE, O'Brien DC & Collins S (2015), International Journal of Circuit Theory and Applications, 43(7), 840-853
BibTeX
@article{opticalreceiver-2015/7,
title={Optical receiver front end for optically powered smart dust},
author={Liu J, Zhou Y, Faulkner GE, O'Brien DC & Collins S},
journal={International Journal of Circuit Theory and Applications},
volume={43},
pages={840-853},
publisher={Wiley},
year = "2015"
}
Optical receiver front end for optically powered smart dust
Liu J, Zhou Y, Faulkner GE, O'Brien DC & Collins S (2015), International Journal of Circuit Theory and Applications, 43(7), 840-853