• Title/Summary/Keyword: Coherent and incoherent interference

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Duvall-Structure-Based Adaptive Beamforming Method for Cancellation of Coherent and Incoherent Interferences (코히런트/인코히런트 간섭신호제거를 위한 Duvall 구조에 기초한 적응 빔형성 방법)

  • Cho, Yang-Ho
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.33 no.10A
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    • pp.1006-1012
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    • 2008
  • This paper presents a Duvall-structure-based adaptive beamforming method which efficiently cancels coherent and incoherent interferences. The proposed method exploits several correlation vectors to increase the dimension of the weight vector, compared to the existing method which uses a single correlation vector only. The increased dimension of the weight vector leads to an improvement in the signal-to-interference plus noise ratio (SINR) performance. Moreover, the proposed method can suppress more interferences than the existing one. Simulation shows that the former is superior to the latter in terms of the steady-state and transient responses.

Recent Research on Self-interference Incoherent Digital Holography

  • Youngrok Kim;Ki-Hong Choi;Chihyun In;Keehoon Hong;Sung-Wook Min
    • Current Optics and Photonics
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    • v.8 no.1
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    • pp.1-15
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    • 2024
  • This paper presents a brief introduction to self-interference incoherent digital holography (SIDH). Holography conducted under incoherent light conditions has various advantages over digital holography performed with a conventional coherent light source. We categorize the methods for SIDH, which divides the incident light into two waves and modulates them differently. We also explore various optical concepts and techniques for the implementation and advancement of SIDH. This review presents the system design, performance analysis, and improvement of SIDH, as well as recent applications of SIDH, including optical sectioning and deep-learning-based SIDH.

Cancellation of Coherent and Incoherent Interferences By Improved Weighted Spatial Smoothing (개선된 Weighted Spatial Smoothing에 의한 코히런트 및 인코히런트 간섭제거)

  • Choi, Yang-Ho
    • Journal of Industrial Technology
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    • v.31 no.A
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    • pp.39-43
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    • 2011
  • Coherent interferences can be rejected using the weighted spatial smoothing (WSS) technique that allows us to be able to completely decorrrelate coherent signals with their arrival angles known. Its effective array aperture, however, can be greatly decreased, in particular when there exist many interferences, thereby degrading the rejection capability. In this paper, we propose an improved spatial smoothing (IWSS) which, with an increased effective array aperture, provides better performance than the existing WSS. Moreover, the proposed beamformer employs multiple constraints so that the coherent interferences are completely cancelled. Simulation shows the superiority of the IWSS in comparison with the conventional WSS.

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A Study on Co-Channel Interference of FH Spread Spectrum Communications (대역확산통신에서 FH무전기의 상호간섭연구)

  • Choe Eun-Jae;Kim Je-Yeong;Yun Byeong-Chang;Bae Hyeon-Ung;Lee Si-Chang
    • Journal of the military operations research society of Korea
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    • v.16 no.2
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    • pp.118-134
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    • 1990
  • This paper considers the mutual interference problem of several users employing the same FH systems in selected multiple user environments. The environment consists of a desired transmitter-receiver pair located in an area where there are M interfering users distributed in accordance with a specified probability density function. Both coherent Phase-Shift-Keyed and incoherent Frequencey-Shift-Keyed modulations are considered. The general formulas of the average bit error probability are derived. The calculation results are summarized and analyzed. The average bit error probability is highly dependent on the relative location of interferences to the desired link, the time duty factor of the hopping and the number of available channels.

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An Adaptive Beamforming Algorithm for the LMS Array Problem (LMS어레이의 문제점을 고려한 적응 빔 형성 알고리듬)

  • Kwag, Young-Kil
    • Journal of the Korean Institute of Telematics and Electronics
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    • v.25 no.10
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    • pp.1263-1273
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    • 1988
  • An adaptive nulling technique is presented to synthetically overcome the integrated problems associated with the conventional LMS array in the performances of jammer rejection, convergence rate, misadjustment, and reference signal generation. The proposed method is to remove the target signal from the array input and to eliminate the reference signal prior to minimization processing. The algorithm is constrained to the residue noise level in adaptive processor. Analysis shows effectiveness of the algorithm for coherent and/or incoherent interference rejection, wide dynamic range of convergence factor, rapid adaptation rate, and small mean square error. Simulation results confirm the theoretical prediction.

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