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논문검색

Analysis on the special quantitative variation of dot model by the position transform

원문정보

초록

영어

Transform variation technique is constituted the vibration status of the flash-gap recognition level (FGRL) on the distribution recognition function. The recognition level condition by the distribution recognition function system is associated with the scattering vibration system. As to search a position of the dot model, we are consisted of the distribution value with character point by the output signal. The concept of recognition level is composed the reference of flash-gap level for variation signal by the distribution vibration function. For displaying a variation of the FGRL of the maximum-average in terms of the vibration function, and distribution position vibration that was the a distribution value of the far variation of the Dis-rf-FA-αMAX-AVG with 5.74±1.12 units, that was the a distribution value of the convenient variation of the Dis-rf-CO-αMAX-AVG with 1.64±0.16 units, that was the a distribution value of the flank variation of the Dis-rf-FL-αMAX-AVG with 0.74±0.24 units, that was the a distribution value of the vicinage variation of the Dis-rf-VI-αMAX-AVG with 0.12±0.01 units. The scattering vibration will be to evaluate at the ability of the vibration function with character point by the distribution recognition level on the FGRL that is showed the flash-gap function by the recognition level system. Scattering recognition system will be possible to control of a function by the special signal and to use a distribution data of scattering vibration level.

목차

Abstract
 1. Introduction
 2. Proposed method of transform variation technique for signal
  2.1 System of position function signal
  2.2. System of transform variation signal
 3. Results and Discussion
  3.1 Dot modeling of the position transform
  3.2 Comparison Database of Dis-FGRL on the Dis-rf-αMED and Dis-rf-αMAX-MIN and Dis-rf-αMED-MIN
 4. Conclusion
 References

저자정보

  • Jeong-lae Kim Department of Biomedical Engineering, Eulji University, Seongnam, 13135, Korea
  • Kyung-seop Kim Department of Faculty of Liberal Arts, Eulji University, Seongnam, 13135, Korea

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