Imperial College London

Professor Stepan Lucyszyn, FIEEE

Faculty of EngineeringDepartment of Electrical and Electronic Engineering

Professor of Millimetre-wave Systems
 
 
 
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Contact

 

+44 (0)20 7594 6167s.lucyszyn Website CV

 
 
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Assistant

 

Ms Susan Brace +44 (0)20 7594 6215

 
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Location

 

602Electrical EngineeringSouth Kensington Campus

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Summary

 

Publications

Publication Type
Year
to

238 results found

Pinuela M, Yates DC, Mitcheson PD, Lucyszyn Set al., 2011, Maximising the Link Efficiency of Resonant Inductive Coupling for Wireless Power Transfer, 1st International Workshop on Wireless Energy Transport and Harvesting, Pages: 1-4

Conference paper

Episkopou E, Papantonis S, Otter WJ, Lucyszyn Set al., 2011, Demystifying Material Parameters for Terahertz Electromagnetic Simulation, 4th UK/Europe-China Conference on Millimetre Waves and Terahertz Technologies, Pages: 80-81

Conference paper

Pinuela M, Mitcheson PD, Lucyszyn S, 2010, Analysis of Scalable Rectenna Configurations for Harvesting High Frequency Ambient Radiation, PowerMEMS 2010, Pages: 41-44

Conference paper

Lucyszyn S, 2010, Introduction, Advanced RF MEMS, Publisher: Cambridge University Press, Pages: 1-22, ISBN: 978-0-521-89771-6

Book chapter

Lucyszyn S, Pranonsatit S, Choi J-Y, Holmes ASet al., 2010, Niche switch technologies, Advanced RF MEMS, Publisher: Cambridge University Press, Pages: 73-108, ISBN: 978-0-521-89771-6

Book chapter

Herbertz K, Lucyszyn S, 2010, Electromagnetic bandgap filter with single-cell monolithic microwave integrated circuit-tuneable defect, IET Microwaves, Antennas and Propagation, Vol: 4, Pages: 1123-1131

Journal article

Lucyszyn S, Zhou Y, 2010, THz Applications for the Engineering Approach to Modelling Frequency Dispersion within Normal Metals at Room Temperature, PIERS Online, Vol: 6, Pages: 293-299

The use of the accurate classical relaxation-effect model for frequency dispersion innormal metals at room temperature with THz structures can be mathematically cumbersome andnot insightful. Recent work has demonstrated that it is possible to dramatically simplify otherwise complex analysis and allows for a much deeper insight to be gained into the classical relaxation-effect model. This paper gives applications for this engineering approach. Here, using the concept of Q-factor for a metal, the synthesized equivalent transmission line model is validated. Then, using the concept of complex skin depth, analysis is performed on hollow metal-pipe rectangular waveguides and their associated cavity resonators. This work proves that the mathematical modelling of THz structures can be greatly simplied by taking an electrical engineering approach to these electromagnetic problems.

Journal article

Chrisostomidis CE, Lucyszyn S, 2010, Seed function combination selection for chained function filters, Vol: 5, Pages: 799-807

An algorithm is presented for seed function combination selection for chained function filters on the basis of pre-defined manufacturing limitations. To this end, and for the first time, combinatorial analysismethods have been applied to computer-aided filter design routines. A fundamental Monte-Carlo margin has been discovered that represents an upper-bound on the worst-case pass-band return-loss responses that cannot be exceeded. This can be exploited to extend the state-of-the art in tuningless high-performance filterimplementations towards higher frequencies and smaller fractional bandwidths or, alternatively, to lower the accuracy and manufacturing cost for a given set of filter specifications.

Journal article

Zhou Y, Lucyszyn S, 2010, Modelling of reconfigurable terahertz integrated architecture (RETINA) SIW structures, PIER Journal, Vol: 105, Pages: 71-92

This paper discusses for the first time the combined optoelectronic-electromagnetic modelling of a new technology that represents a paradigm shift in the way millimetre-wave and terahertz electronics can be implemented using the REconfigurable Terahertz INtegrated Architecture (RETINA) concept. Instead of having traditional metal-pipe rectangular waveguide structures with metal sidewalls, RETINA structures have photo-induced virtual sidewalls within a high resistivity silicon substrate. This new class of substrate integrated waveguide (SIW) technology allows individual components to be made tuneable and subsystems to be reconfigurable, by changing light source patterns. Detailed optoelectronic modelling strategies for the generation of virtual sidewalls and their electromagnetic interactions are presented in detail for the first time. It is found with double-sided illuminated RETINA structures that an insertion loss of 1.3 dB/ λg at 300 GHz is predicted for the dominant TE10 mode and for a cavity resonator a Q-factor of 4 at 173 GHz is predicted for the TE101 mode. While predicted losses are currently greater than other non-tuneable/reconfigurable SIW technologies, there is a wide range of techniques that can improve their performance, while still allowing completely arbitrary topologies to be defined in the x-z plane. For this reason, it is believed that this technology could have a profound impact on the future of millimetre-wave and terahertz electronics. As a result, this paper could be of interest to research groups that have the specialised experimental resources to implement practical demonstrator exemplars.

Journal article

Pu SH, Holmes AS, Yeatman EM, Papavassiliou C, Lucyszyn Set al., 2010, Stable zipping RF MEMS varactors, JOURNAL OF MICROMECHANICS AND MICROENGINEERING, Vol: 20, ISSN: 0960-1317

Journal article

Lucyszyn S, Zhou Y, 2010, Engineering approach to modelling frequency dispersion within normal metals at room temperature for THz applications, PIER Journal, Vol: 101, Pages: 257-275, ISSN: 1559-8985

Journal article

Lucyszyn S, Zhou Y, 2010, THz Applications for the Engineering Approach to Modelling Frequency Dispersion within Normal Metals at Room Temperature, Progress in Electromagnetics Research Symposium, Publisher: ELECTROMAGNETICS ACAD, Pages: 1378-1384, ISSN: 1559-9450

Conference paper

Lucyszyn S, 2010, Commercial Applications for RF MEMS, 40th European Microwave Conference, Publisher: IEEE, Pages: 348-348, ISSN: 2325-0305

Conference paper

Pranonsatit S, Holmes AS, Lucyszyn S, 2010, Sectorised Horn Antenna Array Using an RF MEMS Rotary Switch, 22nd Asia-Pacific Microwave Conference (APMC), Publisher: IEEE, Pages: 1909-1913

Conference paper

Robertson ID, Hizan HM, Hunter IC, Abunjaileh AI, Shafique MF, Lucyszyn Set al., Millimeter-wave substrate-integrated circuits on photo-imageable substrate and LTCC, European Microwave Week (EuMW 2010) Workshop Proceedings: Recent Advances on Substrate Integrated Waveguide Filters

Conference paper

Lucyszyn S, Substrate integrated metal-pipe rectangular waveguides, IEEE International Microwave Symposium (IMS2010) Workshop Proceedings, WSI: Substrate Integrated Circuits

Conference paper

Lucyszyn S, Zhou Y, 2010, Characterising room temperature THz metal shielding using the engineering approach, PIER Journal, Vol: 103, Pages: 17-31

Journal article

Lucyszyn S, 2010, Advanced RF MEMS, Publisher: Cambridge Univ Pr, ISBN: 9780521897716

A comprehensive and up-to-date guide to RF MEMS theory and applications.

Book

Choi J-Y, Ruan J, Coccetti F, Lucyszyn Set al., 2009, Three-Dimensional RF MEMS Switch for Power Applications, IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, Vol: 56, Pages: 1031-1039, ISSN: 0278-0046

Journal article

Larsson MP, Lucyszyn S, 2009, Mechanical characterization of C60 whiskers by MEMS bend testing, Journal of Physics: Conference Series (JPCS), Vol: 159, Pages: 1-8

Journal article

Zhou Y, Lucyszyn S, 2009, HFSS™ modelling anomalies with THz metal-pipe rectangular waveguide structures at room temperature, EM Academy's PIERS Online Journal, Vol: 5, Pages: 201-211

Journal article

Zhou Y, Lucyszyn S, 2009, HFSS™ Modelling Anomalies with THz Metal-Pipe Rectangular Waveguide Structures at Room Temperature, Progress in Electromagnetics Research Symposium (PIERS 2009), Publisher: ELECTROMAGNETICS ACAD, Pages: 1372-1382, ISSN: 1559-9450

Conference paper

Zaidon N, Larsson MP, Syms RRA, Lucyszyn Set al., 2009, Electrical and optical micromachined connectors, clips and clamps, Proc. Int. Conf. on MEMS (ICMEMS 2009)

Conference paper

Lucyszyn S, Miyaguchi K, Jiang HW, Robertson ID, Fisher G, Lord A, Choi J-Yet al., 2008, Micromachined RF-coupled cantilever inverted-micro strip millimeter-wave filters, IEEE/ASME JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, Vol: 17, Pages: 767-776, ISSN: 1057-7157

Journal article

Lucyszyn S, 2008, Microwave characterization of nickel, EM Academy’s PIERS Online Journal, Vol: 4, Pages: 686-690

Journal article

Lucyszyn S, Zhou Y, 2008, Reconfigurable Terahertz Integrated Architecture (RETINA), 33rd International Conference on Infrared, Millimeter and Terahertz Waves, Publisher: IEEE, Pages: 269-270

Conference paper

Herbertz K, Lucyszyn S, 2008, Two-Dimensional Metamaterials for Dual-Band Filter Applications, 38th European Microwave Conference, Publisher: IEEE, Pages: 1614-1617

Conference paper

Lucyszyn S, 2008, Microwave characterization of nickel, Progress in Electromagnetics Research Symposium (PIERS 2008), Publisher: ELECTROMAGNETICS ACAD, Pages: 893-897, ISSN: 1559-9450

Conference paper

Lucyszyn S, Miyaguchi K, Robertson ID, Jiang HWet al., 2008, Coupled-line RF MEMS Filters for Millimeter-wave Applications, 20th Asia Pacific Microwave Conference (APMC 2008), Publisher: IEEE

Conference paper

Larsson MP, Lucyszyn S, Characterizing Young’s modulus for C60 whiskers, International Union of Materials Research Societies-International Conference in Asia (IUMRS-ICA 2008), Symposium N (Fullerene and Nano Materials)

Conference paper

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