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IR-UWB 시스템에서 상관 검출 수신기를 위한 디지털 미세 타이밍 추적기
고석준,Ko Seok-Jun 한국통신학회 2006 韓國通信學會論文誌 Vol.31 No.9C
펄스 방식(Impulse radio)의 초광대역(Ultra-Wideband) 시스템의 타이밍 동기과정에서 획득/추적 과정이 이상적으로 수행되더라도 잔여 타이밍 오차는 존재하게 된다. 이러한 잔여 타이밍 오차는 시스템의 성능에 큰 영향을 미치게 된다. 본 논문에서는 상관 검출 수신기에서 미세 타이밍 오차를 보상하기 위해 보조신호(Reference signal)를 이용한 디지털 위상고정 루프(Digital Phase-Locked Loop)를 제시한다. 우선, 미세 타이밍 오차에 의한 비트에러률(Bit Error Rate:BER)의 성능 열화를 고찰한 후, 타이밍 추적기를 사용함으로써 타이밍 오차가 보상되는 과정과 보상 후 BER 성능을 제시한다. 그리고 타이밍 검출기는 보조신호와 수신신호간의 상관을 이용하는 방식이 제안되었으며 샘플링 주기는 프레임 단위로 이루어지도록 설계되었다. 또한, 본 논문은 성능비교를 위해 여러 종류의 가우시안 모노사이클 펄스에 대해 성능 평가를 수행한다. In the impulse radio ultra-wideband communication systems, the residual timing offset exists when the acquisition and tracking of the timing synchronization is well done. And the offset affects the performance of the system dramatically. In order to compensate the offset, we present the digital phase-locked loop that uses the reference signal in the correlation detection receiver. First, we show the degradation of BER performance that is caused by the offset, and then compensation process of the timing tracker and performance improvement. In this paper, the timing detector in the tracker operates at the sampling period of frame level uses the correlation between received and reference signal. Also, we present the performance comparison by using the computer simulation results for different Gaussian monocycle pulses.
UWB Automobile Short Range Radar Receivers Performance In a Log-Normal Clutter Background
난데쉬,고석준,Kumaravelu, Nandeeshkumar,Ko, Seok-Jun The Institute of Electronics and Information Engin 2011 電子工學會論文誌-TC (Telecommunications) Vol.41 No.4
초광대역 레이더는 높은 분해 능력으로 인해 단거리 차량용 레이더로 주목받고 있다. 차량으로부터 반사된 레이더 신호는 "clutter"라는 원하지 않는 반사 신호를 갖게 되어, 목표물을 검출하는데 어려움을 갖게 된다. 그러므로 목표물에서 반사된 신호로부터 보다 확실하게 검출하기 위하여 레이더 검출기를 개발할 필요가 있다. 본 논문에서는 log-normal clutter 환경에서 다양한 평균과 분산에서 최적인 검출기를 구하였다. 비동기 방식의 검출기로 자승 검출기와 선형 검출기, 로그 검출기 등을 분석하였다. 본 논문에서는 컴퓨터 시뮬레이션을 통해 검출기의 성능을 분석하여, 차량용 레이더로 최적인 검출기를 구하였다. Ultra wideband radars attract considerable attention as a short range automotive radar because of its high range resolution. Radar signal reflected from a target often contains unwanted echoes called as clutter, so the detection of target is difficult due to clutter echoes. Therefore, it is important to investigate the radar detector for better detecting from the reflected signals. In this paper, the optimal detector is obtained for various mean and variance value in log-normal clutter environment. The types of non-coherent detectors used are square law detector, linear detector, and logarithmic detector. The performances of detectors are compared in log normal clutter environment and the suitable detector is determined for automotive short range radar application.
수중 음향통신에서 binary phase shift keying신호의 프레임동기 방법
양경필,김완진,도대원,고석준,YANG, Gyeong-pil,KIM, Wan-Jin,DO, Dae-Won,KO, Seokjun 한국음향학회 2022 韓國音響學會誌 Vol.41 No.2
In this paper, a frame synchronization structure for the Binary Phase Shift Keying (BPSK) modulation method in underwater acoustic communication was proposed. The proposed frame synchronization structure is largely divided into two. First, the approximate position and frequency offset of the frame are obtained by non-coherent correlation and sliding Fast Fourier Transform (FFT) method. Second, after compensating for the frequency error to the received signal, the exact position of the frame is obtained by coherent correlation method. Maritime experiments were conducted to confirm the performance of the 2-STEP frame synchronization structure. It was showed that the limitations of the non-coherent correlation and sliding FFT method can be verified when the power of the received signal was greatly reduced due to the channel characteristics. As a result, stable frame synchronization could be obtained by compensating for the frequency error and then using the coherent correlation method.
수중 음향통신에서 위상고정루프와 결합된 등화기의 성능분석
김승환,김인수,도대원,고석준,Kim, Seunghwan,Kim, In Soo,Do, Dae-Won,Ko, Seokjun 한국음향학회 2022 韓國音響學會誌 Vol.41 No.2
In this paper, the performance of joint equalizer and phase-locked loop in underwater communications is analyzed. In the channel where the Doppler frequency exists, it is difficult to recover the transmitted data only by the equalizer. To compensate for the Doppler frequency, the phase-locked loop is used. For removing the time-varying multipath and the Doppler frequency simultaneously, the equalizer and the phase-locked loop operate jointly. Also, if the initial Doppler frequency error obtained by Fast Fourier Transform (FFT) is compensated, the convergence speed of the joint equalizer and phase-locked loop can be improved. To verify the performance, lake and sea experiments were conducted. As a result, it was showed that the joint equalizer and phase-locked loop converges sufficiently in the preamble (known data) period regardless of whether the Doppler frequency is compensated or not. And, the bit error in random data period is not occurred. However, we can increase the convergence speed of the equalizer more than twice through the compensation of Doppler frequency.