Article
Publicly Available
Frontmatter
Published/Copyright:
January 5, 2016
Published Online: 2016-1-5
Published in Print: 2016-1-4
© 2016 by De Gruyter
Articles in the same Issue
- Frontmatter
- Improved Cross Polarization and Broad Impedance Bandwidth from Simple Single Element Shorted Rectangular Microstrip Patch: Theory and Experiment
- Compact Bandpass Filter Based on Parallel-coupled Lines and Quasi-lumped Structure
- Compact Dual-Band Bandpass Filter Using Stubs Loaded Ring Resonator
- A Low Conversion Loss Eighth Harmonic Mixer with Wide Band-Stop Filters for Low Cost 94 GHz Receiver Front-Ends
- Design of a Compact Quad-Channel Diplexer
- A Low Phase Noise Fully Monolithic 6 GHz Differential Coupled NMOS LC-VCO
- The Interaction of Terahertz Waves and a Dusty Plasma Slab with Epstein Distribution
- Statistical Beamforming for Interference Mitigation in Multi-cell Massive MIMO Systems
- Interference Mitigation Based on Intelligent Location Selection in a Canonical Communication Network
- A Novel Iteration Model for Electromagnetic Scattering from Rough Surfaces
- A Novel Approach to Photonic Generation and Modulation of Ultra-Wideband Pulses
Articles in the same Issue
- Frontmatter
- Improved Cross Polarization and Broad Impedance Bandwidth from Simple Single Element Shorted Rectangular Microstrip Patch: Theory and Experiment
- Compact Bandpass Filter Based on Parallel-coupled Lines and Quasi-lumped Structure
- Compact Dual-Band Bandpass Filter Using Stubs Loaded Ring Resonator
- A Low Conversion Loss Eighth Harmonic Mixer with Wide Band-Stop Filters for Low Cost 94 GHz Receiver Front-Ends
- Design of a Compact Quad-Channel Diplexer
- A Low Phase Noise Fully Monolithic 6 GHz Differential Coupled NMOS LC-VCO
- The Interaction of Terahertz Waves and a Dusty Plasma Slab with Epstein Distribution
- Statistical Beamforming for Interference Mitigation in Multi-cell Massive MIMO Systems
- Interference Mitigation Based on Intelligent Location Selection in a Canonical Communication Network
- A Novel Iteration Model for Electromagnetic Scattering from Rough Surfaces
- A Novel Approach to Photonic Generation and Modulation of Ultra-Wideband Pulses