姓名 |
吳柏達(WU, PO-TA)
查詢紙本館藏 |
畢業系所 |
光機電工程研究所 |
論文名稱 |
硬體在迴路用動態變動磁場模擬艙
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相關論文 | |
檔案 |
[Endnote RIS 格式]
[Bibtex 格式]
[相關文章] [文章引用] [完整記錄] [館藏目錄] 至系統瀏覽論文 ( 永不開放)
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摘要(中) |
本論文研究以亥姆霍茲線圈(Helmholtz Coil)開發一個可程式設定動態磁場的2米直徑磁場校正艙,用以校正磁力計、測量酬載機構的殘磁以便修正抵消、以及模擬在太空中飛行的實測的動態磁場。本平台透過前饋與回饋控制依規劃產生變動的磁場。磁場規劃的設定有靜態磁場以及動態磁場兩種模式。使用者可以透過人機介面將變動的磁場作時序排程,並監測線圈的電流和磁場動態。校正艙的系統、機構、電路、軟體、以及人機介面的設計已經過實驗驗證,並以"硬體在迴路"之應用加以確認系統的實用性。校正艙的磁場設定之動態範圍涵蓋±100000nT、解析度達0.19nT、精確度<2nT、磁場的更新頻率可達270Hz、改變設定後達到穩定的時間為13ms。 |
摘要(英) |
A two meter diameter magnetometer calibration Helmholtz chamber is developed. Dynamic magnetic field scenarios as well as static test field can be programmably generated through a human-machine interfaces (HMI). The magnetic field is controlled to follow the setup scenario by both feed forward and feedback schemes. The electric currents in the coils and the resultant magnetic field are monitored and logged through the programming interface. With this chamber, a magnetometer can be calibrated, the inherent magnetic field bias in a payload structure can be measured and calibrated out, and an actual in-flight magnetic field scenario can also be emulated for a hardware-in-the-loop (HIL) test. The system, mechanical design, circuits, control software, and the HMI are tested and its applications are proven practical and convenient. The measurement specifications achieved are a standard deviation of 2nT with the resolution of 0.19nT in the dynamic range of ±100000nT. The magnetic field setting can be updated at the maximum rate of 270Hz while the settling time is 1.3m sec after each magnetic field set point change |
關鍵字(中) |
★ 磁力校正艙 ★ 亥姆霍茲線圈 ★ 可程式設定 ★ 動態磁場模擬 ★ 硬體在迴路 |
關鍵字(英) |
★ magnetometer calibration chamber ★ Helmholtz coil ★ programmable ★ dynamic magnetic field emulation ★ hardware in the loop, HIL |
論文目次 |
論文摘要 I
ABSTRACT II
致謝 IV
圖目錄 VII
表目錄 IX
第一章 緒論 1
1.1 研究目的與動機 1
1.2 文獻回顧 1
1.3 研究構想 3
1.4 論文章節 3
第二章 理論及技術基礎 4
2.1 HELMHOLTZ COIL磁場均勻度定義與推導 4
2.2 HELMHOLTZ COIL磁場均勻度的影響變因 8
第三章 系統設計 11
3.1 制定規格與特色 11
3.2 建立硬體迴路模型 12
3.3 系統方塊設計 15
3.4 機構硬體設計 18
3.5 線圈纏繞與組裝 21
3.6 人機介面 23
3.7 硬體電路設計 28
3.8 PI CONTROL軟體演算法 33
第四章 數據分析與討論 35
4.1 背景磁場量測 35
4.2 背景電流雜訊量測 38
4.3 致動磁場與感測磁場間之轉換矩陣量測 42
4.4 HELMHOLTZ 產生磁場之誤差量測 48
4.5 HELMHOLTZ 閉迴路磁場之收斂量測 51
4.6 HELMHOLTZ 磁場產生系統動態步階響應量測 54
4.7 HELMHOLTZ 磁場產生系統動態頻率響應量測 59
4.8 機構殘磁量測 62
4.9 實體迴路模擬 HARDWARE-IN-THE-LOOP SIMULATION 67
第五章 結論 71
第六章 參考文獻 72 |
參考文獻 |
[1]電磁學之發展,網址:
http://www.phy.ncu.edu.tw/dcc/Development/4E&M.htm
[2]通電螺線管,搜搜百科,網址: http://baike.soso.com/v2799462.htm#3
[3]許良,「科學家的故事,一代物理大師-亥姆霍茲」,科學月刊,1995
[4] A.E. Ruark, M.F. Peters, "Helmholtz Coils for Producing
Uniform Magnetic Fields", Journal of the Optical Society of
America and Review of Scientijk Instruments, August 1926
[5]A.H. Firester, "Design of Square Helmholtz Coil Systems", Review of Scientijic Instruments, Vol. 37, No. 9, September
[6]Bronaugh, Edwin L., "Helmholtz coils for calibration of probes and sensors: limits of magnetic field accuracy and uniformity.", Electromagnetic Compatibility, 1995., Symposium Record., 1995, IEEE International Symposium on IEEE, 1995.
[7]Trout, S. R., "Use of Helmholtz coils for magnetic measurements.", Magnetics, IEEE Transactions on 24.4 (1988): 2108-2111.
[8]Biot-Savart Lae-維基百科,網址:
http://en.wikipedia.org/wiki/Biot%E2%80%93Savart_law
[9]電流的磁場,網址:
http://phyedu.suda.edu.cn/phyol/article/chap12/12-4/12-4.htm
[10]世界地磁大概範圍,網址:http://zone.ni.com/reference/en-XX/help/371894F-01/lvsimconcepts/sim_c_config
[11]Hardware-in-the-Loop Configuration,網址:http://zone.ni.com/reference/en-XX/help/371894F-01/lvsimconcepts/sim_c_config/
[12]
Hardware-In-the-Loop (HIL), PrecisionMBA, LLC, 2005
[13] Fluxgate FVM400, http://www.meda.com/Data_Sheets/FVM400 Instruction Manual.pdf
[14] DAC1220E datasheet,網址: http://focus.ti.com/docs/prod/folders/print/dac1220.html
[15] ADS1246 datssheet,網址:http://focus.ti.com/docs/prod/folders/print/ads1246.html
[16] 彭元隆,「具次奈Tesla解析度之動態變動磁場模擬艙建構與校正」,國立中央大學光機電工程研究所碩士論文,民國100年
[17] Make a PI controller on an 8-bit microcontroller,網址:
http://www.eetimes.com/design/other/4006505/ContentItem_5CE2110E_8A90_4BB9_8C6E_6FA462AA20C1
[18] 許盈皓,「ESEMS太空氣象科學酬載叢集」,國立中央大學光機電工程研究所碩士論文,民國97年 |
指導教授 |
江士標
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審核日期 |
2013-8-2 |
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