Simranjit Singh
Punjab Engineering College, University of Rochester, Thapar University, Punjabi University
About
Experienced Associate Professor with a demonstrated history of working in the higher education industry. Dr. Simranjit Singh name was included in the top 2% most cited scientist in the world released by Stanford University and Scopus. Skilled in Teaching, Research, team leadership, Optisystem, VPItransmission Maker Optical System and optics experimentations. Strong education professional with a Doctor of Philosophy - PhD focused in Electrical, Electronics and Communications Engineering from Thapar Institute of Engineering and Technology. He is Raman fellow of UGC, Govt. of India and Host Scientist of FICCI, Govt. of India. Postdoc Associate in University of Rochester, NY, USA. 4 research projects were completed worth Rs. 2 Crore. He and his group have published more than 60 research papers in reputed SCI Journals.
Employment
-
Punjab Engineering College Associate Professor2023 - Present
-
University of Rochester Postdoc fellow2016 - 2017
-
Punjabi University Assistant Professor2011 - 2023
Education
-
Thapar University Ph.D2011 - 2014
Projects & Funding
Projects & funding information is unavailable.
Publications (51)
- 100G-PON over dual polarized 16QAM by utilizing heterodyne-modulated millimeter eave for 6G fronthaul Save
- Millimeter wave over fiber based 50G-wavelength division multiplexed passive optical network for 5G and beyond communications Save
- Performance Evaluation of Bandwidth Allocating Algorithms in Generalized Multi Protocol Label Switched Optical Networks to Enhance Quality of Service Save
- Influence of nonlinear effects on 6.4 Tb/s dual polarization quadrature phase shift keying modulated dense wavelength division multiplexed system Save
- Performance Investigation of 1.68 Tb/s Spectral Efficient Hybrid OTDM–WDM System Using Orthogonal Modulation Format Save
- All-optical integrated half adder/subtractor and full adder/subtractor using SOA-MZI based tree architecture Save
- Bandwidth efficient hybrid modulation technique in the scenario of 3.5 Tb/S dense wavelength division multiplexed system Save
- Design of an integrated multi-arm power splitter using photonic crystal waveguide Save
- Far field detection of different elements using photonic crystals Save
- Performance investigation of suppression of four wave mixing using optical phase conjugation with different modulation format in DWDM soliton communication system Save