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完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.advisor | 王昭男 | zh_TW |
dc.contributor.advisor | Chao-Nan Wang | en |
dc.contributor.author | 陳致愷 | zh_TW |
dc.contributor.author | Chih-Kai Chen | en |
dc.date.accessioned | 2023-12-20T16:23:43Z | - |
dc.date.available | 2023-12-21 | - |
dc.date.copyright | 2023-12-20 | - |
dc.date.issued | 2023 | - |
dc.date.submitted | 2023-09-21 | - |
dc.identifier.citation | [1] E. W. Siemens, "Improvement in Magneto-Electric Apparatus," United States Patent, 1874.
[2] M. R. B. Merit, G. Lemarquand and V. Lemarquand, "Enhanced construction of the direct radiator electrodynamic loudspeaker," International Journal of Applied Electromagnetics and Mechanics, vol. 34, pp. 49-61, 2010. [3] A. N. Thiele, "Loudspeakers In Vented Boxes: Part I," Journal Of The Audio Engineering Society, vol. 19, p. 11, 1971. [4] R. H. Small, "Closed-Box Loudspeaker Systems," Journal of Audio Engineering Society, vol. 20, 21, pp. 285-303, 1972. [5] R. H. Small, "Direct-Radiator Loudspeaker System Analysis," Journal of Audio Engineering Society, vol. 20, 1972. [6] R. H. Small, "Vented-Box Loudspeaker Systems," Journal of Audio Engineering Society, vol. 21, pp. 316-343, 1973. [7] CUNNINGHAM, W. Jack, ''Non‐linear distortion in dynamic loudspeakers due to magnetic effects.'' The Journal of the Acoustical Society of America, 1949. [8] KLIPPEL, Wolfgang, ''Dynamic measurement and interpretation of the nonlinear parameters of electrodynamic loudspeakers. ''Journal of the Audio Engineering Society, 1990 [9] KLIPPEL, Wolfgang, ''Nonlinear large-signal behavior of electrodynamic loudspeakers at low frequencies.'' Journal of the Audio Engineering Society, 1992, 40.6: 483-496. [10] KLIPPEL, Wolfgang, ''Diagnosis and remedy of nonlinearities in electrodynamical transducers.'' Audio Engineering Society Convention 109. Audio Engineering Society, 2000. [11] KLIPPEL, Wolfgang; SEIDEL, Ulf. Fast and accurate measurement of linear transducer parameters. Audio Engineering Society, 2001. [12] KLIPPEL, W, '' Assessing large signal performance of transducers.'' Klippel GmbH, 2003. [13] KLIPPEL, Wolfgang, ''Loudspeaker nonlinearities–causes, parameters, symptoms.'' Audio Engineering Society Convention 119. Audio Engineering Society, 2005. [14] KAIZER, A. J. M, ''The modeling of the nonlinear response of an electrodynamic loudspeaker by a Volterra series expansion. ''Audio Engineering Society Convention 80. Audio Engineering Society, 1986. [15] RAVAUD, Romain; LEMARQUAND, Guy; ROUSSEL, Tangi, ''Time-varying non linear modeling of electrodynamic loudspeakers.'' Applied Acoustics, 2009, 70.3: 450-458. [16] 白明憲, "微型揚聲器分析評估與設計最佳化." 國科會計畫報告2007. [17] 王嘉瑩, "微基因演算法於行動電話用揚聲器之最佳化設計." 逢甲大學航太與系統工程學系碩士論文, 2007. [18] 蔣多惟, "多目標基因演算法於揚聲器腔體最佳化之研究." 國立台灣大學工程科學及海洋工程學研究所碩士論文, 2012. [19] R. Nakao, Y. Kajikawa, and Y. Nomura, "An estimation method of parameters for closed-box loudspeaker system," IEICE transactions on fundamentals of electronics, communications and computer sciences, vol. 91, pp. 3006-3013, 2008. [20] 黃金國, ''動圈式揚聲器單體非線性參數之估測法.'' 國立台灣大學工程科學及海洋工程學研究所碩士論文, 2015. [21] F. V. Hunt, Electroacoustics. New York: Acoustical Society of America, 1954. [22] S. Kirkpatrick and M. Vecchi, "Optimization by simmulated annealing," science, vol. 220, pp. 671-680, 1983. [23] BRIGHT, Andrew Paddock, et al. ''Active control of loudspeakers: An investigation of practical applications.'' 2002 [24] LEACH, W. Marshall, ''Introduction to electroacoustics and audio amplifier design.'' Dubuque, IA, USA: Kendall/Hunt Publishing Company, 2003. [25] 白明憲, 工程聲學 : 全華圖書, 2016 [26] 許文馨, "微型喇叭之輸出分析及品質改善之研究," 國立台灣大學工程科學及海洋工程學研究所碩士論文, 2010 [27] 楊尚憲, "動圈式揚聲器非線性失真之控制研究," 國立台灣大學工程科學及海洋工程學研究所碩士論文, 2015 | - |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/91302 | - |
dc.description.abstract | 早期的研究指出,動圈式揚聲器的非線性失真主要由電磁及機械結構引起,其中磁力系統的力量因子(force factor)和懸吊系統的剛性(stiffness)主導了失真的來源。由於本實驗室並沒有直接量測出非線性參數的儀器,為了實現僅靠測量單體聲壓便能夠得到非線性參數的方法,且縮短得到參數的時間。本研究首先通過建立電-機-聲類比電路之線性系統來模擬揚聲器單體的特性,經過推導整理出類比電路法的數學模型;接著將非線性參數以二次多項式的假設引入模型當中,並使用模擬退火法(simulated annealing)將模型模擬的聲壓與實驗量測到的聲壓不斷進行擬合迭代後,估測出力量因子及剛性之非線性參數的曲線。將模擬與實驗結果進行觀察比較,以確定類比電路法與退火法最佳化之可行性。最後設計並探討非線性參數的曲線形狀對於失真之間的影響。結果顯示當輸入皆為對稱的曲線,並不會產生任何偶次失真分量。而偶次失真將會跟著曲線之頂點偏移的情況出現,且當偏移量變大時,奇次失真變化並不明顯,反之偶次失真則會隨著偏移量變大跟著上升。最後,發現力量因子與剛性曲線之頂點異側偏移的情況,相較於頂點同側偏移,對除了二次互調失真之外的偶次失真皆有明顯的抑制作用。 | zh_TW |
dc.description.abstract | Early research indicated that the nonlinear distortion in dynamic loudspeakers is primarily induced by both electromagnetic and mechanical structural factors, where the force factor of the magnetic system and the stiffness of the suspension system dominate the sources of distortion. Due to the absence of instruments for directly measuring nonlinear parameters in this laboratory, a method was pursued to obtain nonlinear parameters solely through the measurement of monomer sound pressure, with the goal of reducing the time required to obtain these parameters. In this study, a linear system of electrical-mechanical-acoustic analog circuit was first established to simulate the characteristics of the loudspeaker unit. The mathematical model of the analog circuit approach was derived and organized. Subsequently, nonlinear parameters are introduced into the model through the assumption of a quadratic polynomial, and a simulated annealing algorithm is employed to iteratively fit the simulated sound pressure with experimentally measured sound pressure, thereby estimating the curves of the nonlinear parameters of force factor and stiffness. Simulation results were compared with experimental results to determine the feasibility of the analog circuit approach and annealing optimization. Finally, the design and exploration of the curve's shape of the nonlinear parameters and its impact on distortion are conducted. The results revealed that when the inputs are symmetric curves, no even-order distortion components are generated. And even-order distortion will occur in conjunction with the displacement of the curve's vertex. Furthermore, as the displacement becomes larger, the changes in odd-order distortion are not very noticeable, while even-order distortion will increase as the displacement magnitude increases. Finally, under conditions of curve vertex displacement, the study found that when the vertex is offset in the opposite direction, compared to the same-side offset, there is a significant inhibitory effect on even-order distortion components other than second-order intermodulation distortion. | en |
dc.description.provenance | Submitted by admin ntu (admin@lib.ntu.edu.tw) on 2023-12-20T16:23:42Z No. of bitstreams: 0 | en |
dc.description.provenance | Made available in DSpace on 2023-12-20T16:23:43Z (GMT). No. of bitstreams: 0 | en |
dc.description.tableofcontents | 誌謝 I
摘要 II Abstract III 1. 目錄 V 2. 圖目錄 VII 3. 表目錄 IX 1. 第一章 緒論 1 1.1. 研究動機 1 1.2. 文獻回顧 2 1.3. 論文架構 3 2. 第二章 揚聲器系統模擬 4 2.1. 動圈式揚聲器基本構造及原理 4 2.2. 電域類比電路 5 2.3. 機械域類比電路 7 2.4. 聲域類比電路 8 2.5. 動圈式揚聲器電-機-聲類比電路 12 2.6. 活塞輻射聲壓 13 3. 第三章 非線性參數之分析及估測 15 3.1. 非線性參數 15 3.1.1 力量因子 16 3.1.2 剛性 18 3.1.3 揚聲器非線性系統模擬 19 3.2. 模擬退火法 21 3.2.1 接受機率 22 3.2.2 退火程序 23 3.2.3 演算法流程 24 4. 第四章 模擬分析與實驗結果 26 4.1. 實驗流程及設備 26 4.2. 模擬退火法之設定 30 4.2.1. 最佳化參數設定 30 4.2.2. 定義目標函數 31 4.2.3. 停止條件之設定 34 4.2.4. 退火程序之設定 34 4.3. 模擬與實驗結果 36 4.3.1. 單體之非線性參數曲線與諧波失真結果 37 4.3.2. 互調失真結果 50 4.4. 非線性參數曲線形狀對於失真的影響 53 5. 第五章 總結 61 5.1. 結論 61 5.2. 未來展望 62 6. 參考文獻 63 | - |
dc.language.iso | zh_TW | - |
dc.title | 動圈式揚聲器非線性參數影響失真之研究 | zh_TW |
dc.title | A Study on the Influence of Nonlinear Parameters on Distortion in Moving-Coil Loudspeakers | en |
dc.type | Thesis | - |
dc.date.schoolyear | 112-1 | - |
dc.description.degree | 碩士 | - |
dc.contributor.oralexamcommittee | 宋家驥;謝傳璋;張嘉仁 | zh_TW |
dc.contributor.oralexamcommittee | Chia-Chi Sung;Chuan-Cheung Tse;Jia-Ren Chang | en |
dc.subject.keyword | 動圈式揚聲器系統,電機聲類比電路法,非線性參數,模擬退火法,諧波失真,互調失真, | zh_TW |
dc.subject.keyword | moving-coil loudspeaker system,EMA analogous circuits,nonlinear parameters,simulated annealing,harmonic distortion,intermodulation distortion, | en |
dc.relation.page | 64 | - |
dc.identifier.doi | 10.6342/NTU202304245 | - |
dc.rights.note | 同意授權(限校園內公開) | - |
dc.date.accepted | 2023-09-21 | - |
dc.contributor.author-college | 工學院 | - |
dc.contributor.author-dept | 工程科學及海洋工程學系 | - |
dc.date.embargo-lift | 2028-09-20 | - |
顯示於系所單位: | 工程科學及海洋工程學系 |
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