Article
Publicly Available
Frontmatter
Published/Copyright:
June 27, 2015
Published Online: 2015-6-27
Published in Print: 2015-6-26
© 2015 by De Gruyter
Articles in the same Issue
- Frontmatter
- A Triple-Band Monopole Planar Antenna for WLAN and WiMAX Applications
- Novel Compact Asymmetric Coplanar Strip (ACPS)-Fed Zeroth-Order Resonant Antennas with Bandwidth Enhancement
- A Wide Stop-Band Miniaturized Branch-Line Hybrid Coupler
- Using Microstrip LPF in Gysel Power Divider for Extreme Size Reduction and Higher Order Harmonic Suppression
- A Novel Compact UWB Bandpass Filter with Quad-Notched Bands Based on S-SCRLHs Resonator
- Space-Time-Coded Adaptive Spatial Modulation in Wireless MIMO Communication Systems
- A Unified Approach to Performance Analysis of Multihop Relay Fading Channels Using Generalized Gamma Model
- Bit Stream Recognition and Analysis in Cognitive Radio
- Improving Physical Layer Security via TAS and Full-Duplex Artificial-Noise-Added Receiver
- Design of OFDM Signal with Good Autocorrelation for Ground Penetrating Radar
- A New Microwave Asphalt Radar Rover for Thin Surface Civil Engineering Applications
Articles in the same Issue
- Frontmatter
- A Triple-Band Monopole Planar Antenna for WLAN and WiMAX Applications
- Novel Compact Asymmetric Coplanar Strip (ACPS)-Fed Zeroth-Order Resonant Antennas with Bandwidth Enhancement
- A Wide Stop-Band Miniaturized Branch-Line Hybrid Coupler
- Using Microstrip LPF in Gysel Power Divider for Extreme Size Reduction and Higher Order Harmonic Suppression
- A Novel Compact UWB Bandpass Filter with Quad-Notched Bands Based on S-SCRLHs Resonator
- Space-Time-Coded Adaptive Spatial Modulation in Wireless MIMO Communication Systems
- A Unified Approach to Performance Analysis of Multihop Relay Fading Channels Using Generalized Gamma Model
- Bit Stream Recognition and Analysis in Cognitive Radio
- Improving Physical Layer Security via TAS and Full-Duplex Artificial-Noise-Added Receiver
- Design of OFDM Signal with Good Autocorrelation for Ground Penetrating Radar
- A New Microwave Asphalt Radar Rover for Thin Surface Civil Engineering Applications