Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 工學院
  3. 機械工程學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/22974
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor陽毅平
dc.contributor.authorJia-Hong Maen
dc.contributor.author馬嘉鴻zh_TW
dc.date.accessioned2021-06-08T04:35:57Z-
dc.date.copyright2009-08-21
dc.date.issued2009
dc.date.submitted2009-08-18
dc.identifier.citation[1] 中華民國行政院, '溫室氣體減量法,' 草案, 2006.
[2] U.N., 'KYOTO PROTOCOL TO THE UNITED NATIONS FRAMEWORK CONVENTION CLIMATE CHANGE,' 1998.
[3] 鄭詩韻, '德國暖秋影響 青蛙不冬眠 候鳥不南飛,' 大紀元, 11月28日 2006年.
[4] 鄭寺音, '百里尋冰 北極熊溺死,' 自由時報, 9月1號 2008.
[5] '油價高 美國人開車里程驟減,' 大紀元, 8月15日 2008.
[6] 李文伯, '高效率低污染淨煤發電技術——IGCC,' 能源報導, 8月 96年.
[7] '核能是解决能源危機的好方法,' 廣州日報, 11月9號 2006.
[8] 郭怡君, '李遠哲:核電廠 仍是必要之惡,' 自由時報, 1月10日 94年.
[9] 高英凱. (2008) 省油獅開始接單. [Online]. Available: http://u-car.com.tw
[10] '全球風電發展進入急速擴張階段,' 經濟日報, 1月30日 2008.
[11] Z. H. U. Mingshan, 'Exergy analysis of methanol-IGCC polygeneration technology based on coal gasification,' 清華大學 (英文版), 2002.
[12] 黃兆璽, '機車省油小祕訣,' 聯合報, 6月17日 2008.
[13] 'Hybrid synergy drive system operation,' Toyota Motor Inc., 2005.
[14] 李添財, 電動汽機車, 臺北市: 全華, 2004.
[15] (2007) Hybrids Under the Hood (part 2) on hybridscenter. [Online]. Available: http://www.hybridcenter.org/hybrid-center-how-hybrid-cars-work-under-the-hood-2.html
[16] F. L. Lewis and V. L. Syrmos, Optimal Control: Wiley-Interscience, 1995.
[17] C. Musardo, et al., 'A-ECMS: An Adaptive Algorithm for Hybrid Electric Vehicle Energy Management,' European Journal of Control, Vol. 11, 2005, p. 509, 2005.
[18] R. Langari and J. S. Won, 'Integrated drive cycle analysis for fuzzy logic based energy management in hybrid vehicles,' in The 12th IEEE International Conference on Fuzzy Systems, 2003.
[19] J. S. Won and R. Langari, 'Intelligent energy management agent for a parallel hybrid vehicle-part II: torque distribution, charge sustenance strategies, and performance results,' IEEE Transactions on Vehicular Technology, vol. 54, pp. 935-953, 2005.
[20] R. Langari and J. S. Won, 'Intelligent energy management agent for a parallel hybrid vehicle-part I: system architecture and design of the driving situation identification process,' IEEE Transactions on Vehicular Technology, vol. 54, pp. 925-934, 2005.
[21] M. Hajimiri and F. Salmasi, 'A fuzzy energy management strategy for series hybrid electric vehicle with predictive control and durability extension of the battery,' in IEEE Conference on Electric and Hybrid Vehicles, 2006, pp. 1-5.
[22] C. C. Lin, et al., 'A stochastic control strategy for hybrid electric vehicles,' in American Control Conference, 2004.
[23] A. Gosavi, Simulation-based optimization: parametric optimization techniques and reinforcement learning: Kluwer Academic Pub, 2003.
[24] J. Liu and H. Peng, 'Modeling and Control of a Power-Split Hybrid Vehicle,' IEEE Transactions on Control Systems Technology, vol. 16, pp. 1242-1251, 2008.
[25] 林相美, '減少空污�限制車輛惰轉:進停車場未即熄火 北市擬罰,' 自由時報, 2007.
[26] (2008) Industrial Batteries on Yuasa batteries. [Online]. Available: http://www.yuasabatteries.com/industrial.php
[27] 游恭豪, '電動機車動力系統之電腦模擬與參數設計,' 碩士, 機械工程學研究所, 國立臺灣大學.
[28] Z. Rahman, et al., 'An investigation of electric motor drive characteristics for EV and HEV propulsion systems,' SAE transactions, vol. 109, pp. 2396-2403, 2000.
[29] 羅煥茂, 電動機控制, 台北市: 電子技術, 1996年.
[30] Y.-P. Yang, et al., 'An Electric Gearshift With Ultracapacitors for the Power Train of an Electric Vehicle With a Directly Driven Wheel Motor,' IEEE Transactions on Vehicular Technology, vol. 56, pp. 2421-2431, Sept. 2007.
[31] J. Holtz, 'Pulsewidth modulation-a survey,' IEEE transactions on Industrial Electronics, vol. 39, pp. 410-420, 1992.
[32] D. C. Hanselman, Brushless permanent magnet motor design, New York: McGraw-Hill, 1994.
[33] P. Yedamale, 'Brushless DC (BLDC) Motor Fundamentals,' Microchip Technology Inc. 2003.
[34] D. K. Cheng, Fundamentals of engineering electromagnetics: Addison-Wesley Reading, MA, 1993.
[35] 'IXTK250N10 - High Current MegaMOSFET data sheet,' IXYS Inc..
[36] 胡聰賢, '電動車輛續航力之提升與煞車回收能量管理 ' 碩士, 機械工程學研究所, 臺灣大學.
[37] 'TLP250 - TRANSISTOR INVERTER FOR AIR CONDITIONOR IGBT GATE DRIVE POWER MOS FET GATE DRIVE data sheet,' Toshiba Inc., Japan.
[38] P. Horowitz and W. Hill, The art of electronics: Cambridge University Press, 1989.
[39] 李周翰, '手輪馬達驅動之電動輪椅的設計與製作,' 碩士, 機械工程學研究所, 臺灣大學.
[40] 周博, et al., 以NIOS為基礎的SOPC設計與實作: 全華科技, 2005.
[41] 'AD7812 - 2.7 V to 5.5 V, 350 kSPS, 10-Bit 4-/8-Channel Sampling ADCs data sheet', Analog Device Inc., MA, U.S..
[42] 'AD7524CQ - CMOS 8-Bit Buffered Multiplying DAC data sheet,' Analog Device Inc., MA, U.S..
[43] 謝凱清, '複合動力車電控系統之整合與發展,' 機械工業雜誌, p. 122~129, 11月 2003年.
[44] M. S. Khanniche and Y. F. Guo, 'A microcontroller-based real-time speed measurement for motor drive systems,' Journal of Microcomputation Application, vol. 18, pp. 39-53, 1995.
[45] 許永和, 介面設計與實習-使用LabView: 全華科技, 2004年.
[46] 廖裕評 and 陸瑞強, 系統晶片設計 使用Quartus II, 修訂版: 全華科技, 2008年.
[47] K. B. Sheu, 'Analysis and evaluation of hybrid scooter transmission systems,' Applied Energy, vol. 84, pp. 1289-1304, 2007.
[48] C.-Y. Tseng, et al., 'A hybrid dynamic simulation model for urban scooters with a mechanical-type CVT,' in IEEE International Conference on Automation and Logistics, 2008, pp. 515-519.
[49] M. van Drogen and M. van der Laan, 'Determination of variator robustness under macro slip conditions for a push belt cvt,' SAE SP, pp. 85-100, 2004.
[50] 黃銀大, '直驅式混合動力機車之設計與控制,' 碩士, 車輛工程系碩士班, 國立台北科技大學, 2004.
[51] 經濟部能源委員會, '車輛油耗指南,' 民國 93年.
[52] 台灣山葉機車, '燃料噴射系統篇,' 2007.
[53] 台灣三住股份有限公司, MISUMI 工廠自動化用機械標準零件: 台灣三住, 2007.
[54] A. S. Sedra and K. C. Smith, Microelectronic circuits, TX, USA: Holt, Rinehart & Winston Austin, 1987.
[55] D. P. Bertsekas, Dynamic Programming and Optimal Control: Athena Scientific, 1995.
[56] 彭梓軒, '應用動態規劃於混合動力機車之設計與分析,' 碩士, 車輛工程系所, 國立臺北科技大學.
[57] T. D. Gillespie, Fundamentals of vehicle dynamics, U.S.: Society of Automotive Engineers, 1992.
[58] C.-C. Lin, et al., 'Energy management strategy for a parallel hybrid electric truck,' in American Control Conference, 2001, pp. 2878-2883 vol.4.
[59] K. Ogata, Discrete-time control systems, NJ: Prentice-Hall Englewood Cliffs, 1987.
[60] 熊偉籌, Multisim 7電路設計及仿真應用: 清華大學出版社, 2005.
[61] D. W. Hart, Introduction to power electronics, NJ, U.S.: Prentice Hall PTR Upper Saddle River, 1996.
[62] 徐普恩, '超高電容應用於電動機車能量管理系統,' 碩士, 機械工程學研究所, 臺灣大學.
[63] 郭昆璋, '超高電容器對混合動力直驅式電動機車性能提升的研究,' 碩士, 機械工程學研究所, 臺灣大學.
[64] 蔡家豪, '智慧型電動機車殘餘電池容量估測之研製,' 碩士, 機械工程學研究所, 國立臺灣大學, 2003.
[65] A. Sciarretta, et al., 'Optimal control of parallel hybrid electric vehicles,' IEEE Transactions on Control Systems Technology, vol. 12, pp. 352-363, 2004.
[66] G. Paganelli, et al., 'Equivalent consumption minimization strategy for parallel hybrid powertrains,' in IEEE 55th Vehicular Technology Conference, 2002, pp. 2076-2081 vol.4.
[67] S. Jeon, et al., 'Multi-mode driving control of a parallel hybrid electric vehicle using driving pattern recognition,' Journal of Dynamic Systems, Measurement, and Control, vol. 124, pp. 141-149, 2002.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/22974-
dc.description.abstract在本論文中,試圖針對台灣的特殊交通環境,提出一個改善交通油耗與汙染的方案。 其中,台灣大量以機車為交通工具的比例,讓對於以機車做為研究系統有強烈的動機。
因此,本研究將現行極為熱門的並聯式混合動力做為動力驅動架構(Parallel Hybrid Structure)套用在機車上面,並採用固定減速比的鍊條取代原本為主流的無段變速系統(Continuous Variable Transmission, CVT),以解決CVT傳動效率過低的問題。
而本論文的研究架構,會先建立系統的動態模型並搭配動態規劃演算法,找出此系統在行車型態ECE 40的最佳操作點與最佳省油性能。 藉由此結果,加以修正控制器的能量管理策略。
而此策略,會再搭配順向模擬分析,與其他非使用動態規劃所設計之策略進行比較。 以證明以動態規劃為基礎所設計之能量管理策略的效果是優於其他策略。
在此同時,開發了使用飛輪結構來等效車輛與駕駛者質量的實驗平台,並以數學與物理模型證明其有效性,進而提供更為方便的實驗平台且不失其擬真性,以供未來更深入的研究使用。
zh_TW
dc.description.abstractThis research aims to study the power management via dynamic programming for a parallel hybrid scooter.
The system is composed of a fixed gear ratio made with a steel chain in place of the continuous variable transmission that is commonly used in scooters.
As for the research structure of this thesis, this research established the dynamic system models first. Following that, it used the dynamic programming (DP) method to find the system’s operation points for the best fuel consumption under driving cycle ECE 40. Then, the operation points were used to modify the strategy for power management set in the controller. Then, this strategy will be put into a forward simulation to make a comparison with other strategies that are not based on the result of DP. This is to make sure that the effectiveness of the one from DP is superior to others.
This research simultaneously designed a flywheel structure to emulate the inertia of the mass of drivers and scooter to provide an experimental platform for practice, without losing the effectiveness of emulation. Moreover, an authentication by mathematical and physical methods was also done. These can provide a use for the more in-depth research in future.
en
dc.description.provenanceMade available in DSpace on 2021-06-08T04:35:57Z (GMT). No. of bitstreams: 1
ntu-98-R95522829-1.pdf: 5327764 bytes, checksum: f8abec82bbcc370f1fc49b2e1406962b (MD5)
Previous issue date: 2009
en
dc.description.tableofcontents誌謝 i
中文摘要 ii
Abstract iii
List of Figures viii
List of Tables xvi
Chapter 1. Introduction 1
1.1. Research Background 1
1.2. Literature Review 4
1.3. Motivation 9
1.4. Objective and Benefit 15
1.5. Research Structure 17
Chapter 2. Experimental System 19
2.1. Electric Propulsion System and Digital Controller 20
2.1.1. Motor and Motor Drive 20
2.1.2. Digital Controller and Peripheral Hardware 32
2.1.3. The Information Display Platform and Interface 50
2.2. The Mechanism Design 53
2.2.1. Transmission System Design 56
2.2.2. Engine System 62
2.2.3. Flywheel Dimension 64
2.2.4. The Use of Idle Wheel 65
2.2.5. Vibration Problem of the Engine 66
Chapter 3. Control Strategy on Energy Management 70
3.1. Basic Concept of Rule Extraction for DP 70
3.2. The Inherent Constraint of the System 73
Torque Constraint 73
RPM Constraint 74
3.3. Switch Rule Design 75
Normal Mode 75
Recharge Mode 78
3.4. A Description of the Operation Scenario 80
Chapter 4. Dynamic Programming and Models 84
4.1. Dynamic Programming 84
4.2. System Models 91
4.2.1. Scooter Dynamics-Scooter Platform 92
4.2.2. The engine (YAMAHA RSZ100) 101
4.2.3. The Direct-Driven Motor 103
4.2.4. The Transmission System 104
4.2.5. The Battery 106
4.2.6. The State Equation and Assumptions 107
4.2.7. System Constraints 109
4.2.8. Discrete Models for DP 110
Chapter 5. Mounting of DP 115
5.1. Mount the Models into DP 115
5.1.1. The Meaning of SOC Difference 119
5.1.2. The Effect of Constraints 121
5.1.3. The Process of Optimal Path Search 124
5.1.4. The Application of the DP Results 133
Chapter 6. Simulation and the Results of the Experiment 134
6.1. Simulation Results 134
6.1.1. Simulation Results of Dynamic Programming 136
6.1.2. Rule Extraction from DP Results 144
6.1.3. Results of the Forward Simulation 146
6.2. Experimental Results 163
6.2.1. The Switch Process Design 163
6.2.2. The Experimental Process without the Recharge Mode 166
Chapter 7. Discussion, Conclusion and Future Work 172
7.1. Discussion 172
7.1.1. DP and Forward Simulation 172
7.1.2. Performance versus Scooter in the Market 177
7.2. Conclusion and Future Work 180
7.2.1. Conclusion 180
7.2.2. Future Work 181
Appendix 184
Shaft Connector 184
Recharge Current Control 186
SOC Estimation 187
Nomenclature 189
Bibliography 192
dc.language.isoen
dc.title並聯式油電混合機車能量管理與動態規劃策略之探討zh_TW
dc.titleA Study on the Strategy of Power Management with Dynamic Programming for a Parallel Hybrid Scooteren
dc.typeThesis
dc.date.schoolyear97-2
dc.description.degree碩士
dc.contributor.oralexamcommittee吳欲沂,劉霆,尤正吉
dc.subject.keyword動態規劃,油電混合,機車,直驅,zh_TW
dc.subject.keyworddynamic programming,hybrid scooter,direct-driven,en
dc.relation.page195
dc.rights.note未授權
dc.date.accepted2009-08-18
dc.contributor.author-college工學院zh_TW
dc.contributor.author-dept機械工程學研究所zh_TW
顯示於系所單位:機械工程學系

文件中的檔案:
檔案 大小格式 
ntu-98-1.pdf
  目前未授權公開取用
5.2 MBAdobe PDF
顯示文件簡單紀錄


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。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved