Zain Ahmed Khan
The Royal Institute of Technology, KTH, Qualcomm, Technische Universitat Ilmenau, Lahore University of Management Sciences
About
Zain AHmed Khan is a PhD student at KTH in the field of Signal Processing. He started my PhD in December 2013 and am working on Nonlinear Channel Modelling with reference to Digital Predistiortion of Power Amplifiers in RF MIMO Transmitters.
Zain completed my Masters Degree in Communication and SIgnal Processing from Technical University Ilmenau, Germany in September 2013. His Masters Thesis with the Electronic Measurements Lab at TU Ilmenau focused on the comparison between Beam Pattern Shaping and Channel Synthesis for MIMO Channel Sounding Data Analysis.
Employment
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The Royal Institute of Technology, KTH PhD Researcher2014 - Present
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Qualcomm Interim Engineer2011 - 2012
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Technische Universitat Ilmenau Student Researcher2010 - 2013
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Lahore University of Management Sciences Research Assitant2009 - 2010
Education
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The Royal Institute of Technology, KTH PhD in Electrical Engineering2014 - Present
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Technische Universitat Ilmenau Master of Science in Communication & Signal Processing2010 - 2013
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Lahore University of Management Sciences Reserach Assistant2009 - 2010
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Ghulam Ishaq Khan Institute of Engineering Sciences and Technology Bachelor of Science in Electronics Engineering2005 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (9)
- Extraction of the Third-Order 3x3 MIMO Volterra Kernel Outputs Using Multitone Signals Save
- Multitone design for third order MIMO volterra kernels Save
- A comparative analysis of the complexity/accuracy tradeoff in the mitigation of RF MIMO transmitter impairments Save
- Digital Predistortion for Joint Mitigation of I/Q Imbalance and MIMO Power Amplifier Distortion Save
- Concurrent dual-band power amplifier model modification using dual two-tone test Save
- Finding Structural Information About RF Power Amplifiers Using an Orthogonal Nonparametric Kernel Smoothing Estimator Save
- Using Intrinsic Integer Periodicity to Decompose the Volterra Structure in Multi-Channel RF Transmitters Save
- Study of the Power Amplifier transfer function symmetry and its relation to dynamic effects Save
- Density estimation models for strong nonlinearities in RF power amplifiers Save