Vol. 73
Latest Volume
All Volumes
PIER 180 [2024] PIER 179 [2024] PIER 178 [2023] PIER 177 [2023] PIER 176 [2023] PIER 175 [2022] PIER 174 [2022] PIER 173 [2022] PIER 172 [2021] PIER 171 [2021] PIER 170 [2021] PIER 169 [2020] PIER 168 [2020] PIER 167 [2020] PIER 166 [2019] PIER 165 [2019] PIER 164 [2019] PIER 163 [2018] PIER 162 [2018] PIER 161 [2018] PIER 160 [2017] PIER 159 [2017] PIER 158 [2017] PIER 157 [2016] PIER 156 [2016] PIER 155 [2016] PIER 154 [2015] PIER 153 [2015] PIER 152 [2015] PIER 151 [2015] PIER 150 [2015] PIER 149 [2014] PIER 148 [2014] PIER 147 [2014] PIER 146 [2014] PIER 145 [2014] PIER 144 [2014] PIER 143 [2013] PIER 142 [2013] PIER 141 [2013] PIER 140 [2013] PIER 139 [2013] PIER 138 [2013] PIER 137 [2013] PIER 136 [2013] PIER 135 [2013] PIER 134 [2013] PIER 133 [2013] PIER 132 [2012] PIER 131 [2012] PIER 130 [2012] PIER 129 [2012] PIER 128 [2012] PIER 127 [2012] PIER 126 [2012] PIER 125 [2012] PIER 124 [2012] PIER 123 [2012] PIER 122 [2012] PIER 121 [2011] PIER 120 [2011] PIER 119 [2011] PIER 118 [2011] PIER 117 [2011] PIER 116 [2011] PIER 115 [2011] PIER 114 [2011] PIER 113 [2011] PIER 112 [2011] PIER 111 [2011] PIER 110 [2010] PIER 109 [2010] PIER 108 [2010] PIER 107 [2010] PIER 106 [2010] PIER 105 [2010] PIER 104 [2010] PIER 103 [2010] PIER 102 [2010] PIER 101 [2010] PIER 100 [2010] PIER 99 [2009] PIER 98 [2009] PIER 97 [2009] PIER 96 [2009] PIER 95 [2009] PIER 94 [2009] PIER 93 [2009] PIER 92 [2009] PIER 91 [2009] PIER 90 [2009] PIER 89 [2009] PIER 88 [2008] PIER 87 [2008] PIER 86 [2008] PIER 85 [2008] PIER 84 [2008] PIER 83 [2008] PIER 82 [2008] PIER 81 [2008] PIER 80 [2008] PIER 79 [2008] PIER 78 [2008] PIER 77 [2007] PIER 76 [2007] PIER 75 [2007] PIER 74 [2007] PIER 73 [2007] PIER 72 [2007] PIER 71 [2007] PIER 70 [2007] PIER 69 [2007] PIER 68 [2007] PIER 67 [2007] PIER 66 [2006] PIER 65 [2006] PIER 64 [2006] PIER 63 [2006] PIER 62 [2006] PIER 61 [2006] PIER 60 [2006] PIER 59 [2006] PIER 58 [2006] PIER 57 [2006] PIER 56 [2006] PIER 55 [2005] PIER 54 [2005] PIER 53 [2005] PIER 52 [2005] PIER 51 [2005] PIER 50 [2005] PIER 49 [2004] PIER 48 [2004] PIER 47 [2004] PIER 46 [2004] PIER 45 [2004] PIER 44 [2004] PIER 43 [2003] PIER 42 [2003] PIER 41 [2003] PIER 40 [2003] PIER 39 [2003] PIER 38 [2002] PIER 37 [2002] PIER 36 [2002] PIER 35 [2002] PIER 34 [2001] PIER 33 [2001] PIER 32 [2001] PIER 31 [2001] PIER 30 [2001] PIER 29 [2000] PIER 28 [2000] PIER 27 [2000] PIER 26 [2000] PIER 25 [2000] PIER 24 [1999] PIER 23 [1999] PIER 22 [1999] PIER 21 [1999] PIER 20 [1998] PIER 19 [1998] PIER 18 [1998] PIER 17 [1997] PIER 16 [1997] PIER 15 [1997] PIER 14 [1996] PIER 13 [1996] PIER 12 [1996] PIER 11 [1995] PIER 10 [1995] PIER 09 [1994] PIER 08 [1994] PIER 07 [1993] PIER 06 [1992] PIER 05 [1991] PIER 04 [1991] PIER 03 [1990] PIER 02 [1990] PIER 01 [1989]
2007-03-31
The Generalized Chebyshev Substrate Integrated Waveguide Diplexer
By
, Vol. 73, 29-38, 2007
Abstract
A new generalized chebyshev substrate integrated waveguide diplexer is presented for high performance. The diplexer is designed with triplet topology based on substrate integrated waveguide technique, which exhibit the generalized chebyshev responses. The triplet topology can facilitate the resonator arrangements of diplexer design for compact size. This diplexer possesses of the advantages of SIW and the generalized chebyshev filters. All couplings, including the negative coupling, are realized by H-plane open windows. A diplexer is designed by using 3th order asymmetric generalized chebyshev filter. Measured results are good agreement with simulation results.
Citation
Shihu Han, Xi-Liang Wang, Yong Fan, Ziqiang Yang, and Zhaner He, "The Generalized Chebyshev Substrate Integrated Waveguide Diplexer," , Vol. 73, 29-38, 2007.
doi:10.2528/PIER07032002
References

1. Han, S., X.-L. Wang, and Y. Fan, "Analysis and design of multiple-band bandstop filters," Progress In Electromagnetics Research, Vol. 70, 297-306, 2007.
doi:10.2528/PIER07020903

2. El Sabbagh, M. A., H.-T. Hus, K. A. Zaki, P. Pramanick, and T. Dolan, "Stripline transition to ridge waveguide bandpass filters," Progress In Electromagnetics Research, Vol. 40, 29-53, 2003.
doi:10.2528/PIER02080503

3. Shen, T. and K. A. Zaki, "Length reduction of evanescent-mode ridge waveguide bandpass filters," Progress In Electromagnetics Research, Vol. 40, 71-90, 2003.
doi:10.2528/PIER02082206

4. Ni, D., Y. Zhu, Y. Xie, et al. "Synthesis and design of compact microwave filters with direct source-load coupling," Journal of Electromagnetic Waves and Applications, Vol. 20, No. 13, 1875-1885, 2006.
doi:10.1163/156939306779292147

5. Jin, L., C. L. Ruan, and L. Y. Chun, "Design E-plane bandpass filter based on EM-ANN model," Journal of Electromagnetic Waves and Applications, Vol. 20, No. 8, 1061-1069, 2006.
doi:10.1163/156939306776930259

6. Ofli, E., R. Vahldieck, and S. Amari, "Novel E-plane filters and diplexers with elliptic response for millimeter-wave applications," IEEE Trans. Microwave Theory and Tech., Vol. 53, No. 3, 843-851, 2005.
doi:10.1109/TMTT.2004.842506

7. Pilote, A. J., K. A. Leahy, B. A. Flanik, and K. A. Zaki, "Waveguide filters having a layered dielectric structure," U.A. Patent, No. 5382931, 1995.

8. Uchimura, H., T. Takenoshita, and M. Fuji, "Development of a laminated waveguide," IEEE Trans. Microwave Theory and Tech., Vol. 46, No. 12, 2438-2443, 1998.
doi:10.1109/22.739232

9. Hao, Z. C., W. Hong, J. X. Chen, X. P. Chen, and K. Wu, "Compact super-wide bandpass substrate integrated waveguide (SIW) filters," IEEE Trans. Microwave Theory and Tech., Vol. 53, No. 9, 2968-2977, 2005.
doi:10.1109/TMTT.2005.854232

10. Chen, X. P., W. Hong, T. Cui, J. X. Chen, and K. Wu, "Substrate integrated waveguide (SIW) linear phase filter," IEEE. Microwave and Wireless Components Letters, Vol. 15, No. 11, 787-789, 2005.
doi:10.1109/LMWC.2005.859021

11. Hao, Z. C., W. Hong, J. X. Chen, X. P. Chen, J. X. Chen, K. Wu, and T. J. Cui, "Multilayered substrate integrated waveguide (MSIW) elliptic filter," IEEE Microwave and Wireless Components Letters, Vol. 15, No. 2, 95-97, 2005.
doi:10.1109/LMWC.2004.842836

12. Hao, Z. C.W. Hong, J. X. Chen, X. P. Chen, and K. Wu, "Planar diplexer for microwave integrated circuits," IEE Proc.-Microw. Antennas Propag., Vol. 152, No. 6, 455-459, 2005.

13. Hunter, I. C., Theory and Design of Microwave Filters, IEE Press.

14. Hong, J. G. and M. J. Lancaster, Microstrip Filters for RF/Microwave Applications, Wiley-Interscience, 2000.

15. Rosenberg, U., "New planar waveguide cavity elliptic function filters," Proc. 25th Eur. Microwave Conf., No. 9, 524-527, 1995.

16. Atia, A. E. and A. E. Williams, "New type of waveguide bandpass filters for satellite transponders," COMSAT Tech., Vol. 1, 21-43, 1971.

17. Cameron, R. J., "Advanced coupling matrix synthesis techniques for microwave filters," IEEE Trans. Microwave Theory and Tech., Vol. 51, No. 1, 1-10, 2003.
doi:10.1109/TMTT.2002.806937

18. Cameron, R. J., M. Yu, and Y. Wang, "Direct-coupled microwave filters with single and dual stopbands," IEEE Trans. Microwave Theory and Tech., Vol. 53, No. 11, 3288-3297, 2005.
doi:10.1109/TMTT.2005.859032

19. Amari, S., "Synthesis of cross-coupled resonator filters using an analytical gradient-based optimization technique," IEEE Trans. Microwave Theory and Tech., Vol. 48, No. 9, 1559-1564, 2000.
doi:10.1109/22.869008

20. Amari, S., U. Rosenberg, and J. Bornemann, "Adaptive synthesis and design of resonator filters with source/load-multiresonator coupling," IEEE Trans. Microwave Theory and Tech., Vol. 50, No. 8, 1969-1977, 2002.
doi:10.1109/TMTT.2002.801348

21. Bray, J. R. and L. Roy, "Resonant frequencies of post-wall waveguide cavities," Proc. Inst. Elect. Eng., Vol. 150, No. 10, 365-268, 2003.

22. Xu, F., Y. Zhang, W. Hong, K. Wu, and T. J. Cui, "Finitedifference frequency-domain algorithm for modeling guided-wave properties of substrate integrated waveguide," IEEE Trans. Microwave Theory and Tech., Vol. 51, No. 11, 2221-2227, 2003.
doi:10.1109/TMTT.2003.818935

23. Yan, L. and W. Hong, "Investigations on the propagation characteristics of the substrate integrated waveguide based on the method of lines," IEE Proc. Microw. Antennas Propag., Vol. 152, No. 1, 35-42, 2005.

24. Matthaei, G. L., L. Young, and E. M. T. Jones, Microwave Filters Impedance-matching and Coupling Structure, Mcgraw-Hill, 1964.