标题: | 以印刷电路板实现轴向式马达定子绕组于电动自行车之应用 Implementation of PCB Stator Winding for Axial-Flux Motor in Electrical-Bike Application |
作者: | 杨甫尊 Yang, Fu-Tzuen 邹应屿 Tzou, Ying-Yu 电控工程研究所 |
关键字: | PCB定子绕组;轴向式马达;电动自行车;PCB stator winding;axial-flux motor;electrical-bike |
公开日期: | 2011 |
摘要: | 本论文针对应用于电动自行车且采用无铁心(coreless)设计之轴向式马达(axial-flux motor)进行分析与探讨,因其定子绕组并非固定于矽钢片上,而是以特殊树脂材料加以固定线圈,故此类马达定子绕组在制作上须赖以手工绕制而使其无法进行大量生产及产生品质不一等缺点。为改善上述之缺点,本论文利用印刷电路板(printed circuit board, PCB)取代既有以铜线缠绕之轴向式马达定子绕组,针对在相同转子磁通量分布下提出印刷电路板之定子绕组设计方法,包括印刷电路板之设计方法、测试平台的建立以及样品之实测结果分析。首先以转子永久磁铁排列与体积的限制为依据,建立一印刷电路板定子绕组布线图,并针对其功率密度(power density)、转矩常数、电阻与电感等之分析作为设计考量,藉以选择一较佳的定子绕组布线做为样品进行后续测试。在马达测试方面,本论文针对此马达分两部份进行单片印刷电路板定子绕组测试,其一为马达操作于发电机模式时,量测其所感应之反抗电动势,藉由三相反抗电动势波形估测其反抗电动势常数、总谐波失真(total harmonic distortion, THD)、磁通量分布及参数鉴别等,可推论所设计之马达其反抗电动势近似正弦波,总谐波失真约为7%。其次则为马达操作于电动机模式时,针对其单片定子绕组进行驱动控制测试,其利用线性型霍尔感测器讯号做为转子位置之参考,以正弦脉波宽度调变(sinusoidal PWM, SPWM)进行驱动控制之模拟与实验分析。测试结果得以验证轴向式马达使用印刷电路板定子绕组的可行性与效能。 This thesis presents an analysis and discussion of the axial-flux motor used on electrical-bike and adopted a coreless design. Therefore, the stator winding fix by a special resin instead of traditional silicon steel. It causes the stator winding can’t be mass produced and have quality variations. In order to improve this problem, this thesis presents a design of the axial-flux motor used on electrical-bike with printed circuit board (PCB) stator winding to instead of copper wire in the same rotor flux distribution, including PCB stator winding design method, test experiment prototype setup and analysis of PCB stator winding prototype test results. By regarding the analysis of shape and position of permanent magnets, power density, torque constant and basic parameters to develop a better PCB stator winding layout. In motor test, the generation mode, measure the tri-phase back-emf to calculate and estimate the back-emf constant, total harmonic distortion (THD), flux distribution and motor *parameters. The results infer that the back-emf is similar to a sine wave and THD is about 7%. Then setup a control system with linear hall-effect sensors and sinusoidal PWM control strategy to drive this motor with a single PCB stator winding. By simulation and experiment to test and analyze the current response, motor performance, skin-effect and temperature, etc. The test and experiment results verifies the feasibility and performance of the axial-flux motor with PCB stator winding. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT079712512 http://hdl.handle.net/11536/44403 |
显示于类别: | Thesis |