Abstract

This letter proposes a multi-passband half-mode substrate integrated waveguide (HMSIW) filter based on the theory of odd and even mode analysis. The filter adopts a triangular HMSIW cavity cut along the diagonal of the rectangle. By etching two dual-mode resonators, the resonant mode of the HMSIW resonator is coupled with the odd-even mode of the dual-mode resonator to achieve multiple passbands. The defected ground structure (DGS) of the filter can reduce the resonance frequency of the HMSIW cavity without increasing the volume of the HMSIW cavity, making it easier to couple with the odd and even mode frequencies of the resonator. The input and output ports are directly coupled through a microstrip line. In this way, it adds an additional coupling path to the filter, which increases the out-of-band suppression without changing the performance in the passband, and improves the overall performance of the filter. To prove the feasibility of the above method, a multi-passband HMSIW filter was fabricated and tested. The center frequencies of the three passbands of the filter are 2.98 GHz, 4.78 GHz, and 6.62 GHz, respectively. The return loss in the passband is better than −15 dB, and the insertion loss is better than 2 dB. The measured results have a good agreement with the simulation results.

Highlights

  • The development trend of modern wireless communication is multi-standard, multimode, ultra-wideband, and miniaturization

  • The odd and even mode frequencies of the dual-mode resonator are coupled with the resonant frequencies of the TE101 and TE102 modes of the half-mode substrate-integrated waveguide (HMSIW) cavity to form a multi-passband

  • Through the above analysis of the HMSIW resonator cavity and the theoretical analysis of the dual-mode resonator, it can be demonstrated that the natural resonant mode of the HMSIW resonator is coupled with the odd-even mode of the dual-mode resonator to form a multiple passband

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Summary

Introduction

The development trend of modern wireless communication is multi-standard, multimode, ultra-wideband, and miniaturization. When analyzing odd the symmetry plane of the resonator structure is equivalent to a short circuit. The odd and even mode frequencies of the dual-mode resonator are coupled with the resonant frequencies of the TE101 and TE102 modes of the HMSIW cavity to form a multi-passband. It can be seen from the description of the above working principle that the analysis of the odd mode is simple. Equivalent circuit of the even mode is the cascade of multi-stage microstrip lines with different admittances, there are more degrees of freedom to control the resonant frequency of the even-mode

Filter Structure
Filter
HMSIW resonant cavity adding
Resonator Parameters Analysis
14. Change added to to improve
Result
Results and Discussion
Conclusions
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