請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/87212完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 江簡富 | zh_TW |
| dc.contributor.advisor | Jean-Fu Kiang | en |
| dc.contributor.author | 周易 | zh_TW |
| dc.contributor.author | I Chou | en |
| dc.date.accessioned | 2023-05-18T16:24:06Z | - |
| dc.date.available | 2023-11-09 | - |
| dc.date.copyright | 2023-05-11 | - |
| dc.date.issued | 2023 | - |
| dc.date.submitted | 2023-02-14 | - |
| dc.identifier.citation | [1] H. E. Shanks and R. W. Bickmore, "Four-dimensional electromagnetic radiators," Canadian J. Phys., vol.37, no.3, pp.263-275, Mar. 1959.
[2] W. H. Kummer, A. T. Villeneuve, T. S. Fong, and F. G. Terrio, "Ultra-low sidelobes from time-modulated arrays," IEEE Trans. Antennas Propag., vol.11, no.6, pp.633-639, Jun. 1963. [3] S. W. Yang, Y. B. Gan, and P. K. Tan, "A new technique for power-pattern synthesis in time-modulated linear arrays," IEEE Antennas Wireless Propag. Lett., vol.2, pp.285-287, 2003. [4] S. W. Yang, Y. B. Gan, A. Y. Qing, and P. K. Tan, "Design of a uniform amplitude time modulated linear array with optimized time sequences," IEEE Trans. Antennas Propag., vol.53, no.7, pp.2337-2339, Jul. 2005. [5] L. Poli, P. Rocca, L. Manica, and A. Massa, "Pattern synthesis in time-modulated linear arrays through pulse shifting," IET Microw. Antennas Propag., vol.4, no.9, pp.1157-1164, Sep. 2010. [6] Q. J. Zhu, S. W. Yang, L. Zheng, and Z. P. Nie, "Design of a low sidelobe time modulated linear array with uniform amplitude and sub-sectional optimized time steps," IEEE Trans. Antennas Propag., vol.60, no.9, pp.4436-4439, Sep. 2012. [7] F. Yang, S. W. Yang, Y. K. Chen, S. W. Qu, J. Hu, "Efficient pencil beam synthesis in 4-D antenna arrays using an iterative convex optimization algorithm," IEEE Trans. Antennas Propag., vol.67, no.11, pp.6847-6858, Nov. 2019. [8] J. C. Bregains, J. Fondevila-Gomez, G. Franceschetti, and F. Ares, "Signal radiation and power losses of time-modulated arrays," IEEE Trans. Antennas Propag., vol.56, no.6, pp.1799-1804, Jun. 2008. [9] S. W. Yang, Y. B. Gan, and A. Y. Qing, "Sideband suppression in time-modulated linear arrays by the differential evolution algorithm," IEEE Antennas Wireless Propag. Lett., vol.1, pp.173-175, 2002. [10] J. Fondevila, J. C. Bregains, F. Ares, and E. Moreno, "Optimizing uniformly excited linear arrays through time modulation," IEEE Antennas Wireless Propag. Lett., vol.3, pp.298-301, 2004. [11] L. Poli, P. Rocca, L. Manica, and A. Massa, “Handling sideband radiations in time-modulated arrays through particle swarm optimization," IEEE Trans. Antennas Propag., vol.58, no.4, pp.1408-1411, Apr. 2010. [12] L. Poli, P. Rocca, and A. Massa, "Harmonic beamforming in time-modulated linear arrays," IEEE Trans. Antennas Propag., vol.59, no.7, pp.2538-2545, Jul. 2011. [13] P. Rocca, Q. J. Zhu, E. T. Bekele, S. W. Yang, and A. Massa, "4-D arrays as enabling technology for cognitive radio systems," IEEE Trans. Antennas Propag., vol.62, no.3, pp.1102-1116, Mar. 2014. [14] L. Poli, D. Masotti, M. A. Hannan, A. Costanzo, and P. Rocca, "Codesign of switching sequence and diode parameters for multiple pattern optimization in time-modulated arrays," IEEE Antennas Wireless Propag. Lett., vol.19, no.11, pp.1852-1856, Nov. 2020. [15] A. Mukherjee, S. K. Mandal, and R. Ghatak, "Efficient computational method for fast extraction of faulty elements from multipattern time-modulated arrays," IEEE Trans. Antennas Propag., vol.69, no.4, pp.1982-1991, Apr. 2021. [16] Y. Ma, C. Miao, Y.-H. Li and W. Wu, "A partition-based method for harmonic beam-forming of time-modulated planar array," IEEE Trans. Antennas Propag., vol.69, no.4, pp.2112-2121, Apr. 2021. [17] R. Maneiro-Catoira, J. C. Bregains, J. A. Garcia-Naya, and L. Castedo, "Enhanced time-modulated arrays for harmonic beamforming," IEEE J. Sel. Topics Signal Process., vol.11, no.2, pp.259-270, Mar. 2017. [18] Y.-Q. Yang, H Wang, and Y.-X. Guo, "A time-modulated array with digitally pre-processed rectangular pulses for wireless power transmission," IEEE Trans. Antennas Propag., vol.68, no.4, pp.3283-3288, Apr. 2020. [19] L. Poli et al., "Advanced pulse sequence design in time-modulated arrays for cognitive radio," IEEE Antennas Wireless Propag. Lett., vol.17, no.5, pp.898-902, May 2018. [20] U. Yesilyurt, I. Kanbaz, S. Kuzu, and E. Aksoy, "A noniterative convoluted harmonic beamforming technique in time modulated arrays," IEEE Trans. Antennas Propag., vol.69, no.2, pp.795-805, Feb. 2021. [21] Q. Chen, C. He, L. Bai, and X. Zhang, "A novel SDMA uplink method based on time-modulated array for UAV communications," in Proc. Int. Conf. Commun. Syst., Dec.2018, pp.19-24. [22] A. Reyna, M. A. Panduro, A. Mendez, L. Balderas, and C. Del-Rio, "Distributed antenna array for FANET``s wireless links using time modulation," in Proc. 13th Eur. Conf. Antennas Propag. (EuCAP), Krakow, Poland, 2019, pp. 1-3. [23] D. A. Jimenez, A. Reyna, M. A. Panduro, C. del Rio, G. Ram, and L. Balderas, "UAVs-based antenna arrays using time modulation," Telecommun. Syst., vol.74, no.2, pp.113-127, Jun. 2020. [24] Y. X. Wang, W. J. Xu, J. Q. Liu, M. Pan, P. Zhang, and J. R. Lin, "An energy-efficientdesign for mobile UAV re surveillance networks," in Proc. 2019 IEEE Int. Conf. on Commun., Shanghai, China, 2019, pp.1-6. [25] S. Seki, N. Sakamoto, A. Yamada, and I. Shirakawa, "History of Morita’s development of computer control mechanisms for re ladder trucks," in Proc. 2019 6th IEEE History of Electrotechnology Conference (HISTELCON), pp.72-77, 2019. [26] Y. Zeng, J. Xu, and R. Zhang, "Energy minimization for wireless communication with rotary-wing UAV," IEEE Trans. Wireless Commun., vol.18, no.4, pp.2329-2345, Apr. 2019. [27] B. Q. Yang, Z. Q. Yu, J. Lan, R. Q. Zhang, J. Y. Zhou, and W. Hong, "Digital beamforming-based massive MIMO transceiver for 5G millimeter-wave communications," IEEE Trans. Microw. Theory Techn., vol.66, no.7, pp.3403-3418, Jul. 2018. [28] K. V. Mishra, M. R. B. Shankar, V. Koivunen, B. Ottersten, and S. A. Vorobyov, "Toward millimeter-wave joint radar communications: A signal processing perspective," IEEE Signal Process. Mag., no.36, no.5, pp.100-114, Sep. 2019. [29] Y. Kim et al., "Feasibility of mobile cellular communications at millimeter wave frequency," IEEE J. Sel. Topics Signal Process., vol.10, no.3, pp.589-599, Apr. 2016. [30] L. Gupta, R. Jain, and G. Vaszkun, "Survey of important issues in UAV communication networks," IEEE Commun. Surveys Tuts., vol.18, no.2, pp.1123-1152, 2nd Quart., 2016. [31] W. Huang, Y. M. Huang, Y. Zeng, and L. X. Yang, "Wideband millimeter wave communication with lens antenna array: Joint beamforming and antenna selection with group sparse optimization," IEEE Trans. Wireless Commun., vol.17, no.10, pp.6575-6589, Oct. 2018. [32] G. Kwon and H. Park, "Joint user association and beamforming design for millimeter wave UDN with wireless backhaul," IEEE J. Sel. Areas Commun., vol.37, no.12, pp.2653-2668, Dec. 2019. [33] G. Li, S. W. Yang, and Z. P. Nie, "Direction of arrival estimation in time modulated linear arrays with unidirectional phase center motion," IEEE Trans. Antennas Propag., vol.58, no.4, pp.1105-1111, Apr. 2010. [34] F.-I. Tseng and D. K. Cheng, "Optimum scannable planar arrays with an invariant sidelobe level," Proc. IEEE, vol.56, no.11, pp.1771-1778, Nov. 1968. [35] J. Robinson and Y. Rahmat-Samii, "Particle swarm optimization in electromagnetics," IEEE Trans. Antennas Propag., vol.52, no.2, pp.397-407, Feb. 2004. [36] D. W. Boeringer and D. H. Werner, "Particle swarm optimization versus genetic algorithms for phased array synthesis," IEEE Trans. Antennas Propag., vol.52, no.3, pp.771-779, Mar. 2004. [37] G. P. Zhu and S. Kwong, "Gbest-guided artificial bee colony algorithm for numerical function optimization," Appl. Math. Comput., vol.217, no.7, pp.3166-3173, Dec. 2010. [38] Y. K. Ma, S. W. Yang, Y. K. Chen, S.-W. Qu, and J. Hu, "Pattern synthesis of 4-D irregular antenna arrays based on maximum-entropy model," IEEE Trans. Antennas Propag., vol.67, no.5, pp.3048-3057, May 2019. [39] R. C. Eberhart and Y. H. Shu, "Particle swarm optimization: Development, applicaitons and resources," in Proc. IEEE Int. Conf. Evolutionary Computation, vol.1, 2001, pp.81-86. [40] S. H. Xu and Y. Rahmat-Samii, "Boundary conditions in particle swarm optimization revisited," IEEE Trans. Antennas Propagat., vol.55, no.3, pp.760-765, Mar. 2007. | - |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/87212 | - |
| dc.description.abstract | 源整合方法在本論文中被提出來應用於時間調變平面陣列天線,以實現多波束的同時指向。每一組輸入到天線單元的電流振幅都是由粒子群優化演算法所尋找得到,並且使得特定諧波頻率的波束可以指向選定的方向。我們透過數值模擬展示了一個使用毫米波波段的源整合時間調變均勻六邊形天線陣列(SC-TM-UHA)同時將六個波束指向不同方向的能力,而這六個波束分別使用六個不同的諧波頻率。數值模擬的結果表示本篇論文所提出的SC-TM-UHA比起使用傳統SOTS方式設計的時間調變天線在輻射多波束的情形之下,擁有更高的功率使用效益、更低的受感度、以及更低的致干擾度。本篇論文也提出了一個旋翼無人機盤旋緊急救助行動系統(HERO),由一個中心無人機以及六個偵查無人機所構成。源整合方法被應用在HERO以建立中心無人機以及偵查無人機之間直接的無線連結。HERO主要的任務從不同高度以及角度拍攝一棟失火大樓的情況,並將這些情況以即時影像的方式傳送出去。 | zh_TW |
| dc.description.abstract | A source-combined (SC) method is proposed on a time-modulated planar array (TMPA) to steer multiple beams simultaneously. A particle swarm optimization (PSO) algorithm is developed to optimize the amplitude of driving current at specific harmonic frequency on array elements to steer a beam towards a designate direction. A source-combined time-modulated uniform hexagonal array (SC-TM-UHA) in millimeter-wave (mm-wave) band is simulated to demonstrate its ability to steer six independent beams at six different harmonics. The simulation results verify that the proposed SC-TM-UHA has higher flexibility, higher power utility, lower susceptibility and lower interference in multiple beam-steering than counterpart arrays designed with conventional sub-sectional optimized time steps (SOTS) method. The SC method is applied to a proposed rotary-wing UAV hovering emergency rescue operation (HERO) system formed by one hub UAV and six monitor UAVs to establish line-of-sight (LoS) wireless links between hub UAV and monitor UAVs. The primary task of the HERO system is to transmit real-time video streaming of an in-situ fire incidence of high building from different angles and heights. | en |
| dc.description.provenance | Submitted by admin ntu (admin@lib.ntu.edu.tw) on 2023-05-18T16:24:05Z No. of bitstreams: 0 | en |
| dc.description.provenance | Made available in DSpace on 2023-05-18T16:24:06Z (GMT). No. of bitstreams: 0 | en |
| dc.description.tableofcontents | Acknowledgment i
中文摘要 iii Abstract iv List of Figures vii List of Tables x 1 Introduction 1 2 Simulation Scenario 10 3 Source-Combined Beamforming Method 16 4 Sub-Sectional Optimized Time Steps Beamforming Method 19 5 Particle Swarm Optimization Algorithm 24 6 Synthesis of Single-Beam Pattern with SC Beamforming Method 28 7 Comparison with Sub-Sectional Optimized Time Steps Beamforming Method 35 7.1 Fluctuation of Main-Lobe Level and Beam Direction 36 7.2 Power Utility 42 7.3 Susceptibility to Other Beams 46 7.4 Interference to Other Beams 47 7.5 Generation of More Beams with SC Beamforming Method 47 8 Highlight of Contributions 53 9 Conclusion 55 References 57 | - |
| dc.language.iso | en | - |
| dc.subject | 多諧波波束成型 | zh_TW |
| dc.subject | 無人機 | zh_TW |
| dc.subject | 時間調變均勻六邊形天線陣列 | zh_TW |
| dc.subject | 源整合 | zh_TW |
| dc.subject | 粒子群優化演算法 | zh_TW |
| dc.subject | 毫米波 | zh_TW |
| dc.subject | source-combined (SC) | en |
| dc.subject | particle swarm optimization (PSO) | en |
| dc.subject | multiple harmonic beamforming | en |
| dc.subject | millimeter-wave (mm-wave) | en |
| dc.subject | unmanned aerial vehicle (UAV) | en |
| dc.subject | time-modulated uniform hexagonal array (TM-UHA) | en |
| dc.title | 以源整合時間調變平面陣列天線實現多波束同時指向 | zh_TW |
| dc.title | Source-Combined Time-Modulated Planar Array for Simultaneous Steering of Multiple Beams | en |
| dc.type | Thesis | - |
| dc.date.schoolyear | 111-1 | - |
| dc.description.degree | 碩士 | - |
| dc.contributor.oralexamcommittee | 林丁丙;唐震寰;邱煥凱;瞿大雄;李啓民 | zh_TW |
| dc.contributor.oralexamcommittee | Ding-Bing Lin;Jenn-Hwan Tarng;Hwann-Kaeo Chiou;Tah-Hsiung Chu;Chi-Min Li | en |
| dc.subject.keyword | 毫米波,多諧波波束成型,粒子群優化演算法,源整合,時間調變均勻六邊形天線陣列,無人機, | zh_TW |
| dc.subject.keyword | millimeter-wave (mm-wave),multiple harmonic beamforming,particle swarm optimization (PSO),source-combined (SC),time-modulated uniform hexagonal array (TM-UHA),unmanned aerial vehicle (UAV), | en |
| dc.relation.page | 63 | - |
| dc.identifier.doi | 10.6342/NTU202300388 | - |
| dc.rights.note | 同意授權(全球公開) | - |
| dc.date.accepted | 2023-02-15 | - |
| dc.contributor.author-college | 電機資訊學院 | - |
| dc.contributor.author-dept | 電信工程學研究所 | - |
| 顯示於系所單位: | 電信工程學研究所 | |
文件中的檔案:
| 檔案 | 大小 | 格式 | |
|---|---|---|---|
| ntu-111-1.pdf | 42.17 MB | Adobe PDF | 檢視/開啟 |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
