• Title/Summary/Keyword: phase-shift technique

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Analysis of Phase Error Due to the Azimuth Angle of the Wave Plates in the Shearography Using Wollaston Prism (Wollaston prism을 이용한 스펙클패턴 전단간섭법에 있어서 파장판의 방위각에 의한 위상오차 해석)

  • Kim, Soo-Gil;Kim, Ki-Soo;Ko, Myung-Sook
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.19 no.8
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    • pp.1-7
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    • 2005
  • We introduced the method to obtain four speckle patterns with relative phase shift of ${\pi}/2$ by the polarizing elements, and calculate the phase at each point of the speckle pattern in shearography using Wollaston prism and polarizing elements. Ant we analyzed the phase error caused by the azimuth angles of wave plates used in the proposed method by Jones matrix.

Low Phase Shift Attenuator Using the Half-Moon Radial Stub (반달 모양의 방사형 동조 스터브를 이용한 저위상 변화 감쇠기의 설계)

  • 윤종만;양기덕;김민택;박익모;신철재
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.8 no.5
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    • pp.452-461
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    • 1997
  • In this paper, we present a computer-aided design(CAD) technique for minimizing the phase shift in microstrip PIN diode attenuators due to the junction capacitance in the equivalent circuit model of PIN diode. Microstrip PIN diode attenuators use the characteristics which the reactance of microstrip line changes from inductive to capacitive as the frequency sweeps across the band. Microstrip PIN diode attenuator designed utilizes the quarter-wavelength transmission line terminating with the half-moon radial stub, which is designed for negligible phase shifting effect over the intersted bandwidth. The attenuator has similar phase shift at 0 dB and 10 dB of attenuation within average $1.27^{\circ}$ between 1.2GHz and 1.9GHz. The input and output return losses between 1.4 GHz and 1.9 GHz are less than 10 dB over the attenuation range of 0 dB and 10 dB.

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Digital Holographic microscopy based on phase shifting technique (위상천이가법에 의한 디지털 홀로그래피 마이크로스코피에 관한 연구)

  • Park, Kwang-Hee;Chai, Pyung-Seak;Eun, Jae-Jeang
    • Journal of the Institute of Convergence Signal Processing
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    • v.12 no.3
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    • pp.181-187
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    • 2011
  • In this thesis, digital in-line holographic microscopy has been implemented with enhanced phase shifting technique. It was demonstrated that the zero-order diffraction noise and the twin image can be eliminated by phase-shifting interferometry very effectively. Also the experimental and numerical reconstruction has been incorporated into one set-up operating in real time. Experimental results and the analysis of the phase map indicate that the proposed system can be very useful for the measurement of microscopic objects and 3-D microscopy.

Sensorless Driving System of Switched Reluctance Motor Using Impressed Voltage Pulse (전압펄스 주입방식을 이용한 SRM 센서리스 제어)

  • Yoon Yong-Ho;Kim, Yuen-Chung;Won Chung-Yuen
    • The Transactions of the Korean Institute of Power Electronics
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    • v.10 no.4
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    • pp.388-396
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    • 2005
  • SRM has not been put into practical applications widely because of its large torque ripple, acoustic noise and low power factor. In addition, a traditional position sensor is needed for the drive control. So we propose an improved sensorless drive method of Switched Reluctance Motors using impressed voltage pulses. Conventional impressed voltage pulse method has a problem of phase delay because of low-pass filter. So in this paper we propose an unproved sensorless driving method based on the impressed voltage pulse using new pulse-shift circuit technique that overcomes the phase delay and start-up problem. Proposed method is implemented in a simple analog circuit instead of using an expensive DSP.

Velocity Estimation of Moving Targets by Azimuth Differentials of SAR Images (SAR 영상의 Azimuth 차분을 이용한 움직이는 물체의 속도측정방법)

  • Park, Jeong-Won;Jung, Hyung-Sup;Won, Joong-Sun
    • Korean Journal of Remote Sensing
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    • v.24 no.2
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    • pp.91-98
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    • 2008
  • We present an efficient and robust technique to estimate the velocity of moving targets from a single SAR image. In SAR images, azimuth image shift is a well blown phenomenon, which is observed in moving targets having slant-range velocity. Most methods estimated the velocity of moving targets from the distance difference between the road and moving targets or between ship and the ship wake. However, the methods could not be always applied to moving targets because it is difficult to find the road and the ship wake. We propose a method for estimating the velocity of moving targets from azimuth differentials of range-compressed image. This method is based on a phenomenon that Doppler center frequency shift of moving target causes a phase difference in azimuth differential values. The phase difference is linearly distorted by Doppler rate due to the geometry of SAR image. The linear distortion is eliminated from phase removal procedure, and then the constant phase difference is estimated. Finally, range velocity estimates for moving targets are retrieved from the constant phase difference. This technique was tested using an ENVISAT ASAR image in which several unknown ships are presented. In the case of a isolated target, the result was nearly coincident with the result from conventional method. However, in the case of a target which is located near non-target material, the difference of the result between from our algorithm and from conventional method was more than 1m/s.

Theoretical analysis and Phase Error Analysis of the Shearographic System for the Deformation Evaluation of Semiconductor Equipment (반도체 장비의 변형 진단을 위한 shearographic system의 이론적 고찰 및 위상오차해석)

  • Kim, Soo-Gil;Hong, Sun-Ki
    • Journal of the Semiconductor & Display Technology
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    • v.4 no.1 s.10
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    • pp.17-21
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    • 2005
  • We presented a new method to obtain four speckle interferograms with relative phase shift of $\pi$/2 by passive devices such as waveplate and polarizer, calculate the phase at each point of the speckle interferogram in shearography using Wollaston prism, which can be applied to the deformation evaluation of semiconductor devices, and theoretically demonstrated the feasibility of the proposed method by Jones matrix.

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Improved Equalization Technique of OFDM Systems Using Block Type Pilot Arrangement (Block Type 파일럿 배치를 적용한 OFDM 시스템의 등화 기법 개선)

  • Kim Whan-Woo;Kim Ji-Heon
    • The Journal of the Acoustical Society of Korea
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    • v.25 no.3
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    • pp.113-120
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    • 2006
  • This paper is concerned with a equalization technique for Orthogonal Frequency Division Multiplexing (OFDM) systems based on a block type pilot arrangement over slow fading channels. The bit rates obtained in underwater channels are relatively modest compared to some other communication channels such as cellular phones or indoor wireless systems. Consequently. the Doppler effect is the important parameter in tracking a channel. In case of a coherent demodulation scheme, the residual mean phase errors due to Doppler frequency may be fatal for the performance of the system. The equalizer could not solely handle mean Doppler shift. To account for the common Doppler effect a phase error tracking loop is used with the frequency equalizer. so that the rotation errors are avoided. Furthermore. simulations show that we can reduce the computational load of the tracking loop with negligible effect on performance.

An Efficient CPM Adaptive Decoding Technique over the Burst Error Channel (연집 오류 채널에 효율적인 CPM 적응복호 방식)

  • 정종문;김대중;정호영;강창언
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.19 no.8
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    • pp.1548-1557
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    • 1994
  • In this paper, the dual mode error correcting adaptive decoding algorithm which is adapted to the continuous phase frequency shift keying(CPFSK) modulation is presented as a technique for overcoming the distortion that reveals from the Rayleigh fading channel. The dual mode adaptive decoder nominally operates as a Viterbi decoder and switches to the burst error correcting mode, whenever the decoder detects an uncorrectable burst error pattern. Under the fading channel environment and when the usable memory quantity is restricted, the dual mode adaptive decoding algorithm shows an advantage in the BER performance over the interleaving technique, and also obtains the merit of not needing the large time delay that the interleaving technique requires. The experimental results from the computer simulation demonstrate the performance of the algorithm and verify the theoretical results.

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Deformation Measurement of Electronic Components in Mobile Device Using High Sensitivity Shadow Moiré Technique (고감도 그림자 무아레 기법을 이용한 모바일 전자부품의 변형 측정)

  • Yang, Hee-Gul;Joo, Jin-Won
    • Journal of the Microelectronics and Packaging Society
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    • v.24 no.1
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    • pp.57-65
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    • 2017
  • The electronic components in mobile device are composed of electronic chips and various other materials. These components become extremely thin and the constituent materials have different coefficient of thermal expansion, so that considerable warpages occurs easily due to temperature change or external load. Shadow $moir{\acute{e}}$ is non-contact, whole field technique for measuring out-of-plane displacement, but the measurement sensitivity is not less than $50{\mu}m/fringe$, which is not suitable for measuring the warpage of the electronic components. In this paper, we implemented a measurement method with enhanced sensitivity of $25{\mu}m/fringe$ by investigating and optimizing various experimental conditions of the shadow $moir{\acute{e}}$. In addition, four $moir{\acute{e}}$ fringe patterns recorded by the phase shift are processes to obtain a $moir{\acute{e}}$ fringe patterns with a sensitivity four times higher. The measurement technique is applied to small electronic components of a smart phone for measuring warpage with a high sensitivity of $5{\mu}m/fringe$ at room temperature and at the temperature of $100^{\circ}C$.

Sensitivity Improvement of Shadow Moiré Technique Using LED Light and Deformation Measurement of Electronic Substrate (LED 광을 이용한 그림자 무아레 방법의 감도 향상 및 모바일 전자 기판의 변형 측정)

  • Yang, Heeju;Joo, Jinwon
    • Journal of the Microelectronics and Packaging Society
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    • v.26 no.4
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    • pp.141-148
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    • 2019
  • Electronic substrates used in a mobile device is composed of various materials, and when the temperature is changed during manufacturing or operating, thermal deformation and stress concentration occur due to the difference in thermal expansion coefficient of each material. The shadow moiré technique is a non-contact optical method that measures shape or out-of-plane displacement over the entire area, but it is necessary to overcome the Talbot effect for high sensitivity applications. In this paper, LED light sources of various wavelengths was used to overcome the Talbot effect caused in the shadow moiré technique. By using the phase shift method, an experimental method to retain the measurement sensitivity within 10 ㎛/fringe was proposed and evaluated, and this method is applied to the thermal deformation measurement of the mobile electronic substrate. In the case of using white light, there were several areas that could not be measured due to the Talbot effect, but in the case of using blue LED light, it was shown that a precise moiré pattern with a sensitivity of 6.25 ㎛/fringe could be obtained in most areas.