在本實驗中將設計一款與市售發球機不同機構之羽毛球發球機,並且利用田口方法探討其發球最佳化趨勢。 目前市售之羽毛球發球機是使用兩顆馬達直接帶動摩擦輪之設計,價格上較為昂貴,本實驗將設計一顆馬達型式之發球機,利用一個馬達搭配1:5齒輪組帶動摩擦輪,達到加速的目的,相較兩顆馬達型式的發球機減少了一顆馬達的成本。 在本實驗中設計之發球機在結構上與市售發球機有所不同,以及考量到對於羽毛球初學者來說,後場高遠球是最基本之球路,故我們利用田口方法針對後場高遠球之球路進行發球最佳化趨勢探討。 在進行了田口實驗過後,我們得到了最佳的參數組合,並進行了最佳實驗,而從實驗結果中,我們確定了發出去的球都可以落在球場的中後場。
In this study was design a new type badminton trainer. And we use Taguchi Method to study how to serve the shuttle optimization. The badminton robot on the market was use two motors with two friction rollers. The price is too expensive to the general public. In this study was design a badminton robot with one AC servo motor and two fiction rollers. And use 1:5gearbox to speed up the friction rollers rotate. The new designs cut costs because it reduced one motor. After the Taguchi experiment, we got the best combination of parameters, and conducted the best experiment. In the experimental results, the experiment reached the set goal.