• Title/Summary/Keyword: Homodyne detection

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Implementation of an LFM-FSK Transceiver for Automotive Radar

  • Yoo, HyunGi;Park, MyoungYeol;Kim, YoungSu;Ahn, SangChul;Bien, Franklin
    • IEIE Transactions on Smart Processing and Computing
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    • v.4 no.4
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    • pp.258-264
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    • 2015
  • The first 77 GHz transceiver that applies a heterodyne structure-based linear frequency modulation-frequency shift keying (LFM-FSK) front-end module (FEM) is presented. An LFM-FSK waveform generator is proposed for the transceiver design to avoid ghost target detection in a multi-target environment. This FEM consists of three parts: a frequency synthesizer, a 77 GHz up/down converter, and a baseband block. The purpose of the FEM is to make an appropriate beat frequency, which will be the key to solving problems in the digital signal processor (DSP). This paper mainly focuses on the most challenging tasks, including generating and conveying the correct transmission waveform in the 77 GHz frequency band to the DSP. A synthesizer test confirmed that the developed module for the signal generator of the LFM-FSK can produce an adequate transmission signal. Additionally, a loop back test confirmed that the output frequency of this module works well. This development will contribute to future progress in integrating a radar module for multi-target detection. By using the LFM-FSK waveform method, this radar transceiver is expected to provide multi-target detection, in contrast to the existing method.

OFDM Star Network Based on Carrier Distribution (캐리어 분배에 의한 OFDM 스타망에 관한 고찰)

  • 채창준
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.21 no.1
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    • pp.281-290
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    • 1996
  • In this paper we suggest an OFDM star network based on carrier distribution and homodyne detection in which all optical carriers generated and stabilized in a specific node are distributed to each node. We studied ASK and PSK modulation schemes and calculated rspective SNRs and BERs for this network. We also discussed on the optical power requirement on the light sources for 200 Mb/s transmission speed. As a result, we found tht ASK and PSK respectively require 13 dBm and 10 dBm for 32 nodes and the nmber of nodes can be expanded to 73 with only 0 dBm of power and minimum insertion losses of components. The proposed network is more reliable than the conventional ones due to the centralized carrier maintenance andthe network is suitable for the adverse environment of the nodes.

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Signal Stabilization of Optical Fiber Acoustic Sensor Using a Cylindrical Piezoelectric Stretcher (원통형 압전신장기를 이용한 광섬유 음향센서의 신호안정화)

  • Lee, D.-H.;Jho, M.-J.;Suh, S.-J.;Eun, H.-J
    • The Journal of the Acoustical Society of Korea
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    • v.8 no.1
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    • pp.75-80
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    • 1989
  • A Mach-Zehnder interferometer using single mode optical fiber was constructed which operates in homodyne detection scheme. Its response to air-borne soun pressure was examined experimentally. A signal stabilizer was developed for maintaining optical fiber interferometer in quadrature condition using a cylindrical piezoelectric stretcher. This maintains the optical fiber sensor at a maximum sensitivity in the presence of the phase drift caused by temperature fluctuation and other types of environmental disturbances.

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Design of phase tracking feedback compensator for stabilization of single mode fiber-optic Mach-Zehnder interferometer (단일모드 광섬유 Mach-Zehnder간섭계의 안정화를 위한 추적궤환 보상기의 설계)

  • 이기완;오문수;홍봉식
    • 제어로봇시스템학회:학술대회논문집
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    • 1989.10a
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    • pp.547-552
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    • 1989
  • Single mode optical fiber interferometeric sensors using phase tracking homodyne detection are typically susceptible to environmentally induced temperature fluctuations and other types of disturbances. In this paper compensator is described, which is a simple and effective phase tracking feedback electronic circuit must be output signal stabilized to achieve maximln sensitivity and linearity of Mach-Zehnder fiber-optic interferomter in the presence of differential phase drift. The phase tracking range of the piezoelectric cylinder in the reference arm is .+-.3.7.pi.rad, and the probe mass about 1 gram in the sensing ann was used for measurements of the gravity acceleration.

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Signal processing of interferometric fiber-optic sensor utilizing a digital homodyne detection (디지털 호모다인 검출방식을 이용한 간섭형 광섬유센서의 신호처리)

  • 예윤해
    • Korean Journal of Optics and Photonics
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    • v.6 no.1
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    • pp.62-69
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    • 1995
  • 레이저 다이오드 구동 전류펄스기간의 발진주파수 변조와 간섭계 출력신호의 시간지연 샘플링을 이용하여 3x3 coupler등과 같은 특수 광부품을 사용하지 않고도 1개씩의 광원과 광검출기를 이용하여 측정신호의 변화방향과 함께 half fringe의 수를 count할 수 있으며 광연결선 주변환경의 변화에 의한 세기변화 에러도 피할 수 있는 간섭형 센서를 위한 새로운 신호처리방식을 제안하고 이 방식을 거울내장형 FP간섭계를 이용한 온도센서에 적용하였다. 온도센서소자로 cavity length가 1cm인 FP간섭계를 이용하여 실온에서 360.deg.C에 걸쳐 분해능 2.7.deg.C로 측정하였으며 이때 최대측정속도는 $ 1.378*10^{5}$.deg.C/sec로 계산되었다. 이 방식에서 분해능과 최대측정속도는 반비례 관계를 가지며 감지 광섬유의 길이에 비례하여 분해능을 높일 수 있다. 또한 6개까지의 센서소자를 한개의 광원과 광검출기로 모니터하는 다중화 센싱 또한 가능한 신호처리 방식으로써 불평형 간섭계를 이용한 모든 종류의 센서에 대해 적용이 가능하다.

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Design of Phase Tracking Feedback Compensator for Stabilization of Single Mode Fiber-Optic Mach-Zehnder Interferometer (단일모드 광섬유Mach-Zehnder 간섭계의 안정화를 위한 위상 추적 궤환 보상기의 설계)

  • 이기완;홍봉식
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.26 no.12
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    • pp.2032-2038
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    • 1989
  • Single mode optical fiber interferometeric sensors using phase tracking homodyne detection are typically susceptible to environmentally indured temperature fluctuations and other types of disturbances. A simple and effective phase tracking feedback electronic circuit for compensator is described to achieve stabilizing signal output, maximum sensitivity and linearity in the fiber optic Mach-Zehnder infterferometer in the presence of differential phase drift. The phase tracking range of the piezoelectric cyclinder in the reference arm is \ulcorner.7 \ulcornerad and the prabe mass about 1 gram in the sensing arm was used for measurements of the gravity acceleration.

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BER Analysis of Coherent Free Space Optical Communication Systems with Holographic Modal Wavefront Sensor

  • Liu, Wei;Yao, Kainan;Huang, Danian;Cao, Jingtai;Wang, Liang;Gu, Haijun
    • Current Optics and Photonics
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    • v.1 no.1
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    • pp.1-6
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    • 2017
  • Degradation of bit-error-rate (BER), caused by atmospheric turbulence, seriously hinders the performance of coherent Free Space Optical (FSO) communication systems. An adaptive optics system proves to be effective in suppressing the atmospheric turbulence. The holographic modal wavefront sensor (HMWFS) proposed in our previous work, noted for its fast detecting rates and insensitivity to beam scintillation, is applied to the coherent FSO communication systems. In this paper, based on our previous work, we first introduce the principle of the HMWFS in brief and give the BER of the coherent FSO with homodyne detection in theory, and then analyze the improvement of BER for a coherent FSO system based on our previous simulation works. The results show that the wavefront sensor we propose is better for weak atmospheric turbulence. The most obvious advantages of HMWFS are fast detecting rates and insensitivity to beam scintillation.