Planar and Angular Modified Substrate Integrated Waveguide (SIW) Filter with Electromagnetic Bandgap(EBG) Structures

1
S. Moitra
S. Moitra
2
R. Dey
R. Dey
3
H. Kumar
H. Kumar
1 Dr. B C Roy Engineering College

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Designing of 180o linear full mode substrate integrated waveguide(FMSIW) filter and a new type of FMSIW filter bent with 90o angle have been proposed in this paper with a new type of Electromagnetic bandgap structure, etched on the PEC surface (upper layer) of the main structures to obtain the bandpass characteristics. Insertion loss is effectively low for both (180o FMSIW and 90o bent FMSIW) filters due to this distinct type of EBG structures. Outcomes of Parametric analysis of the EBG structures have also been studied and presented in graphical form. Entire experiments have been done with Neltec (NH-9320), the dielectric constant of 3.2 and thickness of 0.8 mm. Proposed filters in this paper are used for microwave Ku band applications. Both bandpass filters are compact in size, low in cost and easy to fabricate. Moreover, 90o bent filters are more convenient in use where the linear filters are restricted.

14 Cites in Articles

References

  1. F Shigeki (1994). {BLR 1237} tPA - Genentech - Toyobo - Patent - Japanese Patent.
  2. D Deslandes,Ke Wu (2003). Single-substrate integration technique of planar circuits and waveguide filters.
  3. J Chen,W Hong,Z Hao,H Li,K Wu (2006). Development of a low cost microwave mixer using a broadband substrate integrated waveguide (SIW) coupler.
  4. Y Cassivi,K Wu (2003). Low cost microwave oscillator using substrate integrated waveguide cavity.
  5. L Yan,W Hong,G Hua,J Chen,K Wu,T Cui (2004). Simulation and experiment on SIW slot array antennas.
  6. X Xu,R Bosisio,K/ Wu (2005). A new six-port junction based on substrate integrated waveguide technology.
  7. W D'orazio,K Wu (2006). Substrate-Integrated-Waveguide Circulators Suitable for Millimeter-Wave Integration.
  8. D Deslandes,K Wu (2001). Integrated microstrip and rectangular waveguide in planar form.
  9. D Deslandes,Ke Wu (2003). Single-substrate integration technique of planar circuits and waveguide filters.
  10. H Li,W Hong,T Cui,K Wu,Y Zhang (2003). Propagation characteristics of substrate integrated waveguide based on LTCC.
  11. M Ho,C Li (2013). Novel balanced bandpass filters using substrate integrated half mode waveguide.
  12. Wei Hong,Bing Liu,Yuanqing Wang,Qinghua Lai,Hongjun Tang,Xiao Yin,Yuan Dong,Yan Zhang,Ke Wu (2006). Half Mode Substrate Integrated Waveguide: A New Guided Wave Structure for Microwave and Millimeter Wave Application.
  13. Yuanqing Wang,Wei Hong,Yuandan Dong,Bing Liu,Hong Tang,Jixin Chen,Xiaoxin Yin,Ke Wu (2007). Half Mode Substrate Integrated Waveguide (HMSIW) Bandpass Filter.
  14. Sourav Moitra,Basudeb Mondal,Asish Mukhopadhyay,Partha Bhowmik (2014). Wide-Banding of Half-Mode Substrate Integrated Waveguide (HMSIW) Filters Using L-Slots.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

S. Moitra. 2017. \u201cPlanar and Angular Modified Substrate Integrated Waveguide (SIW) Filter with Electromagnetic Bandgap(EBG) Structures\u201d. Global Journal of Research in Engineering - F: Electrical & Electronic GJRE-F Volume 17 (GJRE Volume 17 Issue F7): .

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Journal Specifications

Crossref Journal DOI 10.17406/gjre

Print ISSN 0975-5861

e-ISSN 2249-4596

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GJRE-F Classification: FOR Code: 090699
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v1.2

Issue date

November 13, 2017

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English

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Designing of 180o linear full mode substrate integrated waveguide(FMSIW) filter and a new type of FMSIW filter bent with 90o angle have been proposed in this paper with a new type of Electromagnetic bandgap structure, etched on the PEC surface (upper layer) of the main structures to obtain the bandpass characteristics. Insertion loss is effectively low for both (180o FMSIW and 90o bent FMSIW) filters due to this distinct type of EBG structures. Outcomes of Parametric analysis of the EBG structures have also been studied and presented in graphical form. Entire experiments have been done with Neltec (NH-9320), the dielectric constant of 3.2 and thickness of 0.8 mm. Proposed filters in this paper are used for microwave Ku band applications. Both bandpass filters are compact in size, low in cost and easy to fabricate. Moreover, 90o bent filters are more convenient in use where the linear filters are restricted.

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Planar and Angular Modified Substrate Integrated Waveguide (SIW) Filter with Electromagnetic Bandgap(EBG) Structures

S. Moitra
S. Moitra Dr. B C Roy Engineering College
R. Dey
R. Dey
H. Kumar
H. Kumar

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