Research of Algorithm of Three dimensional Continuous Path

碩士 === 南台科技大學 === 電機工程系 === 90 === In the new Millennium, the government puts the industry into action and plans to make Taiwan a science and technology island. In view of the imminent stiff competition after Taiwan’s joining WTO, in the plan put forth by the government, high-end technol...

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Main Authors: poli, 鄭博仁
Other Authors: j.r.hong
Format: Others
Published: 2002
Online Access:http://ndltd.ncl.edu.tw/handle/26357455260241509244
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spelling ndltd-TW-090STUT04420152016-11-22T04:12:48Z http://ndltd.ncl.edu.tw/handle/26357455260241509244 Research of Algorithm of Three dimensional Continuous Path 三軸連續路徑演算法之研究 poli 鄭博仁 碩士 南台科技大學 電機工程系 90 In the new Millennium, the government puts the industry into action and plans to make Taiwan a science and technology island. In view of the imminent stiff competition after Taiwan’s joining WTO, in the plan put forth by the government, high-end technologies are not only developed to speed up the velocity of information flow, but also used to increase the added value of industrial products. Machinery plays an important part of the industry. In this thesis, the interpolation algorithms of Numerical Control (NC) are emphasized. The most crucial element in a NC system is the continuous-path control. The algorithm of linear interpolations determines the performance of a contouring NC machine. Current methods proposed are all about the applications on two-dimensional NC systems. In this work, we propose a new algorithm that can be applied in the interpolation on the three-dimensional, continuous-path control machines. This three-dimensional algorithm is composed of two-dimensional algorithms. The idea behind this new algorithm is that, a three-dimensional coordinate system can be regarded as the combination of two, two-dimensional coordinate systems. Hence, an additional directional path update can be found in our new algorithm. j.r.hong 洪正瑞 2002 學位論文 ; thesis 62
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description 碩士 === 南台科技大學 === 電機工程系 === 90 === In the new Millennium, the government puts the industry into action and plans to make Taiwan a science and technology island. In view of the imminent stiff competition after Taiwan’s joining WTO, in the plan put forth by the government, high-end technologies are not only developed to speed up the velocity of information flow, but also used to increase the added value of industrial products. Machinery plays an important part of the industry. In this thesis, the interpolation algorithms of Numerical Control (NC) are emphasized. The most crucial element in a NC system is the continuous-path control. The algorithm of linear interpolations determines the performance of a contouring NC machine. Current methods proposed are all about the applications on two-dimensional NC systems. In this work, we propose a new algorithm that can be applied in the interpolation on the three-dimensional, continuous-path control machines. This three-dimensional algorithm is composed of two-dimensional algorithms. The idea behind this new algorithm is that, a three-dimensional coordinate system can be regarded as the combination of two, two-dimensional coordinate systems. Hence, an additional directional path update can be found in our new algorithm.
author2 j.r.hong
author_facet j.r.hong
poli
鄭博仁
author poli
鄭博仁
spellingShingle poli
鄭博仁
Research of Algorithm of Three dimensional Continuous Path
author_sort poli
title Research of Algorithm of Three dimensional Continuous Path
title_short Research of Algorithm of Three dimensional Continuous Path
title_full Research of Algorithm of Three dimensional Continuous Path
title_fullStr Research of Algorithm of Three dimensional Continuous Path
title_full_unstemmed Research of Algorithm of Three dimensional Continuous Path
title_sort research of algorithm of three dimensional continuous path
publishDate 2002
url http://ndltd.ncl.edu.tw/handle/26357455260241509244
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AT zhèngbórén researchofalgorithmofthreedimensionalcontinuouspath
AT poli sānzhóuliánxùlùjìngyǎnsuànfǎzhīyánjiū
AT zhèngbórén sānzhóuliánxùlùjìngyǎnsuànfǎzhīyánjiū
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