Low-Profile Omnidirectionally Radiated Microstrip Antenna for LEO Satellite Swarm Communication
            
                编号:120
                访问权限:私有
                更新:2024-10-20 21:26:12
                                浏览:1002次
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                摘要
                A novel monopolar microstrip antenna with symmetric ring-shaped trapezoid ground slots is proposed in this article. The center patch facilitates gap-coupling feeding directly connected with 50 Ohm coaxial line, while six gap-coupled radiators arranged in quasi-circle configuration. The trapezoid ground-slots beneath the six radiators serve to adjust the impedance bandwidth and reduce the overall antenna size. The proposed antenna exhibits good omni-directional radiation pattern with broad bandwidth. Consequently, the antenna supports degenerated non-fundamental TM02 and TM31 modes and demonstrates an impressive impedance bandwidth of 760 MHz from 5.44 GHz to 6.2 GHz with respect to 13% fractional bandwidth. Compared to recent monopolar microstrip antenna research, the proposed antenna shows a smaller size and a thinner substrate. This outcome makes the proposed antenna as ultra-low-profile, and our design stands out by providing a comparable bandwidth.
             
            
                关键词
                hexagonal patch,ground slots,omni-directional radiation,LEO
             
            
            
                    稿件作者
                    
                        
                                    
                                        
                                                                            
                                    Seongmin Pyo
                                    Hanbat National University
                                
                                    
                                                                                                                        
                                    Dongho Lee
                                    Mokpo National University
                                
                                             
                          
    
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