• Title/Summary/Keyword: 주파수 샘플링

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An Analysis of Radio Signal Reproduction Characteristics depending on a sampling frequency (샘플링 주파수에 따른 고주파 신호 복재특성 분석)

  • Lim Joong-Soo;Chae Gyu-Soo;Jung Chul-Gu;Choi Chang-Min
    • Proceedings of the KAIS Fall Conference
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    • 2005.05a
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    • pp.169-172
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    • 2005
  • 반도체 기술의 발달과 더불어 디지털 신호 기억회로는 매우 빠른 속도로 발달되었다. 그러나 수 GHz 이상의 높은 고주파 신호를 저장하였다가 복재하는 것은 매우 어려운 기술이다. 고주파 신호의 복재를 위해서 과거에는 신호 감쇄가 적은 고주파 케이블을 일정한 길이로 감아서 시간지연을 시키는 아날로그 방식의 고주파 신호 저장회로가 사용되었으나, 신호 샘플링 및 광대역 신호 변환기 등이 발전되면서 고주파 신호를 고속으로 샘플링 한 뒤 디지털 회로에 저장 한 후에 필요시 고주파 신호를 복재하는 기술이 가능해 쳐다. 본 논문에서는 주파수 대역이 3 옥타브 이상 되는 광대역 고주파 신호를 저장하고 복재할 때 샘플링 주파수에 따른 특성을 분석하였다.

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Phase Tracking for Orthogonal Frequency Division Multiplexing Systems (직교 주파수 분할 다중화 시스템을 위한 위상 오차 추적)

  • Jeon, Tae-Hyun
    • Journal of the Institute of Electronics Engineers of Korea TC
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    • v.43 no.12 s.354
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    • pp.61-67
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    • 2006
  • This paper proposes the algorithm for tracking of the residual phase errors incurred by carrier frequency offset and sampling frequency offset in the orthogonal frequency division multiplexing (OFDM) systems which are suitable for high data rate wireless communications. In the OFDM systems the subcarriers which are orthogonal to each other are modulated by digital data and transmitted simultaneously. The carrier frequency offset causes degradation of signal to noise ratio(SNR) performance and interference between the adjacent subcarriers. The errors in the sampling timing caused by the sampling frequency difference between the transmitter and the receiver sides also cause a major performance degradation in the OFDM systems. The residual error tracking and compensation mechanism is essential in the OFDM system since the carrier and the sampling frequency offset cause the loss of orthogonality resulting in the system performance loss. This paper proposes the scheme where the channel gain and the payload data information are reflected in the residual error tracking process which results in the reduction of the estimation error and the tracking performance improvements under the frequency selective fading wireless channels.

Real-time surface acoustic wave reader platform implementation in the frequency domain sampling method using a Cortex-A9 (Cortex-A9을 이용한 주파수 영역 샘플링 방식의 실시간 표면 탄성파 리더 플랫폼 구현)

  • Yoon, Sang-hun;kim, Young-kil
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2015.05a
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    • pp.343-345
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    • 2015
  • Currently, SAW Device has been used as a frequency filter using the property of passing only a desired frequency with a narrow bandwidth. However, the areas of activity in various fields since the permanent advantages can be widened by using a non-powered. These sensor tags using SAW Device has been done, but a lot of research, the development of the state still insufficient for Reader Platform. How to read the value of the ID Tag Using SAW Device has a time domain sampling (TDS) method and a frequency domain sampling (FDS) method. The purpose of the paper, we use the FDS method that requires high-speed processing with a relatively slow sampling rate does not require high-speed sampling. Reader Platform was the way to detect ID through PC as FDS way, but It is based on the Cortex-A9 processor and it works a low price, compact and real-time Reader Platform.

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Development and Test Result of Fast Digital Conversion System with Variable Sampling Frequencies for Astronomical Radio Siginal Processing (우주 전파 신호 처리용 가변 샘플링 고속 디지털 변환 장치 개발)

  • Kang, Yong-Woo;Song, Min-Gyu;Kim, Hyo-Ryoung
    • The Journal of the Korea institute of electronic communication sciences
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    • v.16 no.6
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    • pp.1175-1182
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    • 2021
  • The receiver of each radio telescope of KVN, has a sampler that converts astronomical radio signal to digital data. The ability of this sampler (the bandwidth, sampling frequency, and sampling bits) is improved by sqrt(n), if the bandwidth is increased by n times, and the number of observable objects increases exponentially in the case of continum spectrum radio sources. As the bandwidth increases, there are the more spectrum lines that can be simultaneously monitored in the radio source. This will greatly expand the research area in astronomical radio observation. For this reason, we are trying to independently develop the technology of the fast digital sampler. Therefore, based on the research experience and technology accumulated so far, An ability of sampling up to 3.5 GHz, that can vary the sampling frequency and can observe in a wider band, was designed and made for proto-type. In this study, we introduce the development details and test results for new sampling system.

The Design and Implementation of Frequency Domain Sampling Method for Surface Acoustic Wave Sensor Platform (주파수 영역 샘플링 방식의 표면 탄성파 센서 플랫폼 설계 및 구현)

  • Sun, Hee-Gab;Joh, Yool-Hee;Kim, Young-Kil
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.17 no.1
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    • pp.218-224
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    • 2013
  • Generally, SAW device, which uses Time Domain Sampling, requires high speed A/D converter because SAW device using TDS needs high sampling speed as much as its high data speed. However, the high price of A/D converter discourages makers from using it. On the other hand, SAW device, which uses Frequency Domain Sampling, does not required high speed A/D converter because SAW device using FDS does not need high sampling speed. It is very efficient in price comparison to its performance because high processing speed of SAW device using FDS can be implemented using low price Embedded Systems. The purpose of the paper is to solve the issues above by designing and realizing SAW device(FDS) using SAW sensor for TDS.

Efficient Image Upsampling using Frequency Resolution Expansion Schemes in DCT Domain (DCT 도메인에서의 주파수 해상도 화장 기법을 이용한 효과적인 이미지 업샘플링)

  • Park Seung-Wook;Park Ji-Ho;Jeon Byeong-Moon;Park Hyun Wook
    • Journal of Broadcast Engineering
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    • v.10 no.4 s.29
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    • pp.505-514
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    • 2005
  • Image upsampling can be performed in both spatial and frequency (transform) domain. In the spatial domain, various upsampling techniques are developed and 6-tap FIR interpolation filter is most well known method, which is embedded in many video coding standards. It can provide high subjective quality but shows low objective quality. In the transform domain, simple zero padding method can produce upsampled image easily. It shows better objective quality than 6-tap filtering, but it yields ringing effects which annoy eyes. In this paper, we present efficient upsampling method using frequency addition method in transform domain to provide better subjective and objective quality than conventional method Extensive simulation results show that the proposed algorithm produces visually fine images with high PSNR.

Frequency Detection Algorithm related Variable Data Sampling and Noise (가변 데이터 샘플링과 잡음을 고려한 주파수 추적 알고리즘)

  • Lim, Young-Bin;Ham, Sung-Sik;Shin, Chul-Ho;Kim, Young- Geun
    • Proceedings of the KIEE Conference
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    • 2015.07a
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    • pp.223-224
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    • 2015
  • 배전 계통 산업 현장에서는 스위칭 소자 및 제어장치, 전 자기기들이 한 대 맞물려 증가하고 있다. 또한, 스마트 그리드(Smart Grid) 및 마이크로 그리드(Micro Grid)의 개념이 도입되면서 분산 전원 이 널리 보급되고 있다. 이로 인해 현장에서는 많은 전기전자기기들이 설치되어 운영 중에 있고, 이것은 noise 및 고조파와 같은 왜란이 발생 되는 원인을 초래하고 있다. 왜란은 여러 전기 전자 장비들의 데이터 취득 왜곡 현상을 발생시키고, 이러한 데이터 손실로 인해 기기들의 오동작 및 사고를 발생시킨다. 대표적인 왜란으로는 common mode noise 같은 대지(大地) 등의 기준점과 각 신호선 사이에 나타나는 노이즈가 있으며, 선로 및 장비 특성에 따라 기수 및 우수 고조파가 있다. 이러한 왜란들은 전자기기들의 오동작 및 신호의 부 정확성으로 제품 신뢰성에 문제를 초래한다. 특히 데이터 계측 실패 및 Serial 통신을 함에 있어서 신호 손실을 발생시켜 데이터 변형을 초래한다. 이로 인해 배전선로에 위치한 전자기기들이 왜곡된 데이터로 동작을 하게 되고 이는 곧 선로의 사고를 발생시키게 된다. 따라서 왜란들을 사전에 방지하여 기기 오동작 및 부동작을 예방하기 위해서 산업계에서는 왜란에 대한 인식을 지속적으로 증가시키고 있다. 실제 현장에서도 이와 같은 왜란으로 인해 기기 오동작을 하는 경우가 많으며 이를 해결하기 위한 여러 신호처리 기법을 적용하고 있다. 이에 본 논문에서는 여러 종류의 샘플링 데이터 량을 생성할 수 있도록 샘플링 속도를 다변환(Multi-interchange)하고 각 샘플링 속도에 맞게 계측된 샘플링 데이터를 DFT 신호 처리하여 왜란으로부터 강건한 계통 주파수를 계측한다. 또한, 주파수 별 DFT 값을 Table화 하여 계통 주파수를 찾아낸다.

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An Algorithm of Minimum Bandpass Sampling Selection with Guard-band Between Down-converted Adjacent IF signals (하향변환된 인접 IF신호간의 보호대역을 고려한 최소 대역통과 샘플링 주파수 선택 알고리즘)

  • Bae, Jung-Hwa;Cho, Jae-Wan;Ko, Yong-Chae;Cac, Tran Nguyen;Park, Jin-Woo
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.32 no.12A
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    • pp.1286-1295
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    • 2007
  • This paper proposes, based on a bandpass sampling theory, a novel method to find valid sampling frequency range and minimum sampling rate with low computational complexity for downconversion of N bandpass radio frequency(RF) signals, under application of all possible signal placements(full permutations) in a IF stage. Additionally, we have developed a complexity-reducing method to obtaine the opttimal and minimal sampling rate for supporting the user-wanted guard-band or spacing between adjacent downconverted signal spectrums. Moreover, we have verified through comparisons with other methods that the proposed methods have more advantageous properties.

Measuring Vibration by using Line Scan Camera (라인 스캔 카메라를 이용한 진동 측정 기술)

  • Kim, Se-Oh;Jeon, Hyeong-Seop;Son, Ki-Sung;Park, Jong Won
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2014.10a
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    • pp.751-752
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    • 2014
  • 센서를 사용한 구조물의 진동측정 시 여러 문제로 인해 사용의 제약을 받아왔다. 이를 극복 하고자 최근 카메라를 이용한 진동 측정 기술이 연구되고 있지만 보통 산업용 카메라의 낮은 샘플링 주파수로 인해 구조물의 진동 측정에 한계를 보였다. 이러한 문제를 해결하기 위하여 본 연구에서는 라인 스캔 카메라의 높은 샘플링 주파수를 이용한 진동 측정 기술을 제안하고 실험을 통하여 성능검증을 수행하였다.

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Complex Bandpass Sampling for SDR front-end (SDR front-end를 위한 Complex Bandpass Sampling)

  • Wang, Hong-Mei;Kim, Jae-Hyung;Kim, Hyung-Jung
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.15 no.8
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    • pp.1805-1812
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    • 2011
  • Bandpass sampling technique has an advantage that it uses lower sampling frequency than Nyquist criterion. But special care is required in choosing sampling frequency to avoid self-image overlapping in the first Nyquist region. Recently, the second-order BPS techniques which can suppress possible self-image by using an additional ADC and by employing digital signal processing have been proposed. This paper addresses a complex BPS based SDR front-end. Unlike general second-order BPS, it needs simple FIR filter to compensate delay in the second ADC. We show a method to find proper sampling frequencies to down convert RF signals selected by tunable RF filter operating in arbitrary frequency range.