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Single layer miniaturized ultra-thin FSS with five closely spaced bands
Anupam Dey, Rajarshi Sanyal
This Paper reveals a novel single layer five band frequency selective surface (FSS). Novelties of the proposed FSS lie in its five closely spaced stop bands at 2.4, 3.38, 4.82, 6.32, and 7.75 GHz as well as the reduced single layer structural thickness (0.0016 ) and the miniaturized unit cell size (0.0656 ) at lower resonant frequency as compared to the existing multiband FSS. The unit cell struct
Multi-band rejection filters based on spoof surface plasmon polaritons and folded split-ring resonators
Luping Li, Lijuan Dong, Peng Chen, Kai Yang
A dualband rejection filter and a triband rejection filter are proposed in this letter, both of which are implemented by cascading spoof surface plasmon polaritons (SSPPs) of the same structure but with diverse rejection bands. Compared with traditional ones, the proposed filters provide more compact structures, wider rejection bands, and better independent tunability. In the proposed filters, the
High-gain cavity backed patch antenna arrays at 140 GHz based on LTCC technology
Zihang Qi, Xiuping Li, Jinjin Chu, Jun Xiao, Hua Zhu
In this paper, high-gain cavity backed patch antenna arrays are proposed based on low temperature co-fired ceramic technology at 140 GHz. By introducing a substrate integrated cavity to the patch antenna element, the gain is enhanced by 3.3 dB. Moreover, a rectangular ring is loaded around the patch for better impedance matching and further gain enhancement. The final simulated maximum gain of the
SIW resonator fed horn mounted compact DRA with enhanced gain for multiband applications
Pramod Kumar, Jitendra Kumar, Shailendra Singh, Utkarsh, Santanu Dwari
A novel design of compact and light-weight horn mounted cylindrical dielectric resonator antenna (CDRA) fed by substrate integrated waveguide (SIW) resonator has been investigated for high gain and multiband applications. SIW resonator contains two closely spaced longitudinal slots of equal length and unequal width to excite the CDRA. These slots are responsible for introducing triple resonating b
Wideband out-of-phase power dividers with improved isolation performance
Kaijun Song, Fei Xia, Yuxuan Chen, Yu Zhu, Jiawei Li, Yong Fan
A compact wideband out-of-phase power divider (PD) with improved isolation performance is proposed. This divider is formed by connecting an additional stub for isolation to output ports of a traditional Marchand balun with a defected ground structure (DGS) been used. To verify the design, a prototype divider is fabricated and tested. The measured results validate the 53.86% band-width centered at
A new method for path-loss modeling
Qiang Li, Hongxin Zhang, Yang Lu, Tianyi Zheng, Yinghua Lv
In this paper, a new path-loss model for electromagnetic wave in an indoor multipath environment is proposed based on matching coefficient, polarization matching factor, and normalized field intensity direction function. This model is called the Friis-extension (Friis-EXT) model, because it operates as the Friis model under certain conditions. In addition, in the modeling process of the path-loss
Compact bandpass-filtering response power divider with high-frequency selectivity and high isolation
Jiawei Li, Kaijun Song, Fei Xia, Shema Richard Patience, Song Guo, Maoyu Fan
A compact high-isolation power divider with bandpass response and high-frequency selectivity is presented in this letter. Two dual-mode resonators are used to realize filtering response. The circuit size of the proposed power divider can be reduced by using dual-mode capacitance loaded square meander loop resonators. Due to capacitive load, the resonator can exhibit slow-wave characteristics, whic
Recent challenges and advances in microwave and radar techniques ? MIKON 2018 special issue
Konrad Jedrzejewski, Frank Weinmann
MRF volume 11 issue 7 Cover and Back matter
Krzysztof Kulpa, Frank Weinmann, Vicente E. Boria, Teresa Martín, Mateo Burgos
MRF volume 11 issue 7 Cover and Front matter
Krzysztof Kulpa, Frank Weinmann, Vicente E. Boria, Teresa Martín, Mateo Burgos
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