Zaman M R, Islam M T, Misran N, Mandeep J S
Centre for Space Science (ANGKASA), Universiti Kebangsaan Malaysia (UKM), Bangi 43600, Malaysia.
Department of Electrical, Electronic and Systems Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia (UKM), Bangi 43600, Malaysia.
ScientificWorldJournal. 2014;2014:131374. doi: 10.1155/2014/131374. Epub 2014 May 6.
Analysis of the resonance response improvement of a planar C-band (4-8 GHz) antenna is proposed using parasitic element method. This parasitic element based method is validated for change in the active and parasitic antenna elements. A novel dual-band antenna for C-band application covering 5.7 GHz and 7.6 GHz is designed and fabricated. The antenna is composed of circular parasitic element with unequal microstrip lines at both sides and a rectangular partial ground plane. A fractional bandwidth of 13.5% has been achieved from 5.5 GHz to 6.3 GHz (WLAN band) for the lower band. The upper band covers from 7.1 GHz to 8 GHz with a fractional bandwidth of 12%. A gain of 6.4 dBi is achieved at the lower frequency and 4 dBi is achieved at the upper frequency. The VSWR of the antenna is less than 2 at the resonance frequency.
提出了一种利用寄生元件法对平面C波段(4 - 8GHz)天线的谐振响应改善情况进行分析。这种基于寄生元件的方法针对有源和寄生天线元件的变化进行了验证。设计并制作了一种用于C波段应用的新型双频天线,覆盖5.7GHz和7.6GHz。该天线由两侧带有不等微带线的圆形寄生元件和矩形部分接地平面组成。对于较低频段,在5.5GHz至6.3GHz(WLAN频段)实现了13.5%的分数带宽。较高频段覆盖7.1GHz至8GHz,分数带宽为12%。在较低频率下实现了6.4dBi的增益,在较高频率下实现了4dBi的增益。该天线在谐振频率处的电压驻波比小于2。