ZTE Communications ›› 2022, Vol. 20 ›› Issue (3): 70-76.doi: 10.12142/ZTECOM.202203009
• Research Paper • Previous Articles Next Articles
WU Qingqiang1, CHEN Jianzhong1(), WU Zengqiang2, GONG Hongwei2
Received:
2021-10-21
Online:
2022-09-25
Published:
2022-09-14
About author:
WU Qingqiang received his BS degree in electromagnetic field and wireless technology and MS degree in electronic science and technology from Xidian University, China in 2019 and 2022, respectively. He joined ZTE Corporation in 2022 after graduation,. During his postgraduate study, he mainly engaged in the research related to filters in the National Key Laboratory of Antennas and Microwave Technology at Xidian University, and participated in the publication of papers in academic journals and international conferences and completed a number of filter related projects. In addition, he won the first-class scholarship of the university for many times, and won the second prize of northwest division in the 15th China Graduate Electronic Design Competition.|CHEN Jianzhong (Supported by:
WU Qingqiang, CHEN Jianzhong, WU Zengqiang, GONG Hongwei. Synthesis and Design of 5G Duplexer Based on Optimization Method[J]. ZTE Communications, 2022, 20(3): 70-76.
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Table 3
Values of the coupling matrix"
Initial | First | Second | Final | |
---|---|---|---|---|
M(s,0) | 1.400 0 | 1.388 4 | 1.374 2 | 1.391 0 |
M(0,1) | 0.658 7 | 0.704 4 | 0.690 8 | 0.673 1 |
M(0,10) | 0.658 7 | 0.644 9 | 0.651 8 | 0.584 2 |
M(9,L1) | 0.501 3 | 0.517 4 | 0.517 4 | 0.501 3 |
M(16,L2) | 0.427 2 | 0.427 2 | 0.428 7 | 0.427 2 |
M(1,1) | 0.708 9 | 0.661 7 | 0.661 7 | 0.656 5 |
M(1,2) | 0.225 4 | 0.224 5 | 0.224 5 | 0.211 1 |
M(2,2) | 0.709 1 | 0.704 7 | 0.704 7 | 0.703 4 |
M(2,3) | 0.092 4 | 0.091 3 | 0.091 3 | 0.092 4 |
M(2,4) | -0.139 8 | -0.145 1 | -0.145 1 | -0.139 3 |
M(3,3) | 0.490 6 | 0.478 2 | 0.478 2 | 0.489 8 |
M(3,5) | 0.083 2 | 0.080 0 | 0.080 0 | 0.083 0 |
M(4,4) | 0.805 4 | 0.798 5 | 0.798 5 | 0.804 0 |
M(4,5) | 0.130 9 | 0.137 2 | 0.137 2 | 0.131 0 |
M(5,5) | 0.712 8 | 0.715 2 | 0.715 2 | 0.712 5 |
M(5,6) | 0.155 1 | 0.158 3 | 0.158 3 | 0.155 5 |
M(6,6) | 0.714 1 | 0.717 4 | 0.717 4 | 0.714 0 |
M(6,7) | 0.086 5 | 0.084 8 | 0.084 8 | 0.086 5 |
M(6,8) | 0.132 2 | 0.139 3 | 0.139 3 | 0.132 1 |
M(7,7) | 0.489 3 | 0.476 9 | 0.476 9 | 0.489 2 |
M(7,9) | -0.131 4 | -0.133 2 | -0.133 2 | -0.132 0 |
M(8,8) | 0.822 1 | 0.821 4 | 0.821 4 | 0.822 0 |
M(8,9) | 0.183 1 | 0.190 8 | 0.190 8 | 0.183 2 |
M(9,9) | 0.709 3 | 0.704 9 | 0.704 9 | 0.708 7 |
M(10,10) | -0.790 9 | -0.790 9 | -0.743 2 | -0.748 4 |
M(10,11) | 0.163 8 | 0.163 8 | 0.178 5 | 0.155 9 |
M(11,11) | -0.791 1 | -0.791 1 | -0.790 2 | -0.787 7 |
M(11,12) | 0.122 2 | 0.122 2 | 0.130 5 | 0.122 0 |
M(12,12) | -0.791 6 | -0.791 6 | -0.792 7 | -0.790 8 |
M(12,13) | 0.070 7 | 0.070 7 | 0.071 7 | 0.092 0 |
M(12,14) | -0.091 9 | -0.091 9 | -0.097 2 | 0.070 7 |
M(13,13) | -0.647 5 | -0.647 5 | -0.642 7 | -0.647 3 |
M(13,15) | 0.075 1 | 0.075 1 | 0.077 3 | 0.075 0 |
M(14,14) | -0.879 1 | -0.879 1 | -0.884 2 | -0.878 9 |
M(14,15) | 0.096 3 | 0.096 3 | 0.107 9 | 0.096 35 |
M(15,15) | -0.791 1 | -0.791 1 | -0.793 5 | -0.791 0 |
M(15,16) | 0.163 8 | 0.163 8 | 0.170 4 | 0.163 8 |
M(16,16) | -0.791 0 | -0.791 0 | -0.783 5 | -0.790 8 |
1 |
RHODES J D, LEVY R. A generalized multiplexer theory [J]. IEEE transactions on microwave theory and techniques, 1979, 27(2): 99–111. DOI: 10.1109/tmtt.1979.1129570
doi: 10.1109/tmtt.1979.1129570 |
2 |
RHODES J D, LEVY R. Design of general manifold multiplexers [J]. IEEE transactions on microwave theory and techniques, 1979, 27(2): 111–123. DOI: 10.1109/ tmtt.1979.1129571
doi: 10.1109/ tmtt.1979.1129571 |
3 |
MACCHIARELLA G, TAMIAZZO S. Novel approach to the synthesis of microwave duplexers [J]. IEEE transactions on microwave theory and techniques, 2006, 54(12): 4281–4290. DOI: 10.1109/TMTT.2006.885909
doi: 10.1109/TMTT.2006.885909 |
4 |
MENG H, WU K L. Direct optimal synthesis of a microwave bandpass filter with general loading effect [J]. IEEE transactions on microwave theory and techniques, 2013, 61(7): 2566–2573. DOI: 10.1109/TMTT.2013.2264682
doi: 10.1109/TMTT.2013.2264682 |
5 |
ZHAO P, WU K L. An analytical approach to synthesis of duplexers with an optimal lumped-element junction model [C]//2014 IEEE MTT-S international microwave symposium (IMS2014). IEEE, 2014: 1–3. DOI: 10.1109/MWSYM.2014.6848399
doi: 10.1109/MWSYM.2014.6848399 |
6 |
ZHAO P, WU K L. An iterative and analytical approach to optimal synthesis of a multiplexer with a star-junction [J]. IEEE transactions on microwave theory and techniques, 2014, 62(12): 3362–3369. DOI: 10.1109/TMTT.2014.2364222
doi: 10.1109/TMTT.2014.2364222 |
7 |
LIU B, YANG H, LANCASTER M J. Synthesis of coupling matrix for duplexers based on a self-adaptive differential evolution algorithm [J]. IEEE transactions on microwave theory and techniques, 2018, 66(2): 813–821. DOI: 10.1109/tmtt.2017.2772855Jan. 2018 .
doi: 10.1109/tmtt.2017.2772855Jan. 2018 |
8 |
YU Y, LIU B, WANG Y, et al. A general coupling matrix synthesis method for all-resonator duplexers and multiplexers [J]. IEEE transactions on microwave theory and techniques, 2020, 68(3): 987–999. DOI: 10.1109/TMTT.2019.2957430
doi: 10.1109/TMTT.2019.2957430 |
9 |
SKAIK T F, LANCASTER M J, HUANG F. Synthesis of multiple output coupled resonator circuits using coupling matrix optimisation [J]. IET microwaves, antennas & propagation, 2011, 5(9): 1081. DOI: 10.1049/iet-map.2010.0447
doi: 10.1049/iet-map.2010.0447 |
10 | XIA W L. Duplexers and multiplexers design by using coupling matrix optimization [D]. Birmingham, U.K.: Birmingham University, 2015 |
11 |
CAMERON R J, KUDSIA C M, MANSOUR R R. Microwave filters for communication systems [M]. Hoboken, USA: John Wiley & Sons, Inc., 2018. DOI: 10.1002/9781119292371
doi: 10.1002/9781119292371 |
12 | MATLAB. MATLAB optimization toolbox. user’s guide [EB/OL]. (2018-05-12)[2021-09-18]. |
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