• 제목/요약/키워드: frequency domain design

검색결과 607건 처리시간 0.026초

Direct Time-domain Phase Correction of Dual-comb Interferograms for Comb-resolved Spectroscopy

  • Lee, Joohyung
    • Current Optics and Photonics
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    • 제5권3호
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    • pp.289-297
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    • 2021
  • We describe a comb-mode resolving spectroscopic technique by direct time-domain phase correction of unstable interferograms obtained from loosely locked two femtosecond lasers. A low-cost continuous wave laser and conventional repetition rate stabilization method were exploited for locking carrier and envelope phase of interferograms, respectively. We intentionally set the servo control at low bandwidth, resulting in severe interferograms' fluctuation to demonstrate the capability of the proposed correction method. The envelope phase of each interferogram was estimated by a quadratic fit of carrier peaks to correct timing fluctuation of interferograms in the time domain. After envelope phase correction on individual interferograms, we successfully demonstrated 1 Hz linewidth of RF comb-mode over 200 GHz optical spectral-bandwidth with 10-times signal-to-noise ratio (SNR) enhancement compared to the spectrum without correction. Besides, the group delay difference between two femtosecond pulses is successfully estimated through a linear slope of phase information.

TCSC의 $H_{\infty}$ 제어에 의한 대규모 전력계통의 지역간 저주파진동 억제 Part II: $H_{\infty}$제어기 설계 (Damping Inter-area Low Frequency Oscillations in Large Power Systems with $H_{\infty}$ Control of TCSC PARTII: Design of $H_{\infty}$ Controller)

  • 김용구;전영환;송성근;심관식;남해곤
    • 대한전기학회논문지:전력기술부문A
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    • 제49권5호
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    • pp.233-241
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    • 2000
  • This paper presents a systematic design procedure of $H_{\infty}$ controller of TCSC for damping low frequency inter-area oscillations in large power systems. Sensitivities of the inter-area mode for changes in line susceptance are computed using the eigen-sensitivity theory of augmented system matrix and TCSC locations are selected using the line sensitivities. The reduced model required for designing a manageable-size $H_{\infty}$ controller is obtained using the reduced frequency domain system identification method and the various weighting functions are tuned systematically to provide a robust performance. The proposed $H_{\infty}$ controller proved to be very effective for damping the inter-area mode of the large KEPCO power system.

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A Perceptually Motivated Active Noise Control Design and Its Psychoacoustic Analysis

  • Bao, Hua;Panahi, Issa M.S.
    • ETRI Journal
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    • 제35권5호
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    • pp.859-868
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    • 2013
  • The active noise control (ANC) technique attenuates acoustic noise in a flexible and effective way. Traditional ANC design aims to minimize the residual noise energy, which is indiscriminative in the frequency domain. However, human hearing perception exhibits selective sensitivity for different frequency ranges. In this paper, we aim to improve the noise attenuation performance in perceptual perspective by incorporating noise weighting into ANC design. We also introduce psychoacoustic analysis to evaluate the sound quality of the residual noise by using a predictive pleasantness model, which combines four psychoacoustic parameters: loudness, sharpness, roughness, and tonality. Simulations on synthetic random noise and realistic noise show that our method improves the sound quality and that ITU-R 468 noise weighting even performs better than A-weighting.

자기장에 의한 조화가진을 받는 구조물의 위상 최적화 (Topology Optimization of a Structure under Harmonic Excitation caused by Magnetic Fields)

  • 유정훈
    • 대한기계학회논문집A
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    • 제25권10호
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    • pp.1613-1620
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    • 2001
  • This study is focused on the application of the homogenization design method (HDM) to reduce the vibration level of a structure excited by magnetic harmonic farces. This is accomplished by obtaining the optimal material distribution in a design domain to minimize the frequency response caused by the magnetic harmonic excitation. The Maxwell stress method is used to compute the magnetic force and the HDM is applied leer the optimization. The developed method is applied to a simple pole model that is excited by the harmonic bending farce caused by the current around an adjacent stator. Results shows that the HDM is valid to minimize the frequency response.

2차원 Quadrature Polar Separable 필터의 최적 설계 (Optimal Design of a 2-D Quadrature Polar Separable Filter)

  • 박종안;박승진
    • 한국통신학회논문지
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    • 제16권5호
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    • pp.434-444
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    • 1991
  • 조직 프로쎄싱을 위한 개선된 2-D QPS(Quadrature Polar Separable) 필터와 그의 응용이 본 논문에서 고찰된다. 필터의 주파수 응답은 2개의 독립된 귀불쌍 즉 PSS(Prolate Spheroidal Sequence)에 근거한 라디얼 웨이팅 함수와 Knutsson 필터에서의 방향각 함수에 의해 구성된다. 필터는 2개의 PSS로 구성되는 2-D Cartesian 필터에서와 같이 각 함수를 라디얼 웨이팅 함수에 근사화 시키기 때문에 에너지 손실면에서 최적화되며, 설계명제 조건이 대역폭, 방향각, 그리고 중심 주파수에만 의존하므로 제어하기가 쉽다. 또한 주파수 영역에서 Knutsson 필터보다 순환적 대칭 특성을 갖는다. 주파수 영역에서 로칼 조직의 방향과 주파수 성분을 평가하기 위하여, 조직합성, 방향각 측정, 그리고 조직 세그멘테이션과 같은 몇가지 응용이 고찰된다.

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FDTD와 Genetic Algorithm을 이용한 CPW 급전 이중대역 슬랏 안테나 설계 (Design of a CPW fed dual-band slot antenna using FDTD and Genetic Algorithm)

  • 오경진;김정표;최재훈;김정일
    • 한국전자파학회:학술대회논문집
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    • 한국전자파학회 2002년도 종합학술발표회 논문집 Vol.12 No.1
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    • pp.278-282
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    • 2002
  • In this paper, a dual-band CPW antenna is designed with the aid of Genetic Algorithm and Finite-Difference Time-Domain method. The design goal is to minimize the magnitude of S$\sub$11/ in the frequency band between 1.8㎓ and 2.4㎓. The resonance frequencies are shifted by about 80MHz and 50MHz from the desired frequencies at 1.8㎓ and 2.4㎓ respectively. But the bandwidth agrees well with that of Simulation.

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Robust Design of Reactor Power Control System with Genetic Algorithm-Applied Weighting Functions

  • Lee, Yoon-Joon;Cho, Kyung-Ho;Kim, Sin
    • Nuclear Engineering and Technology
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    • 제30권4호
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    • pp.353-363
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    • 1998
  • The H$_{\infty}$ algorithms of the mixed weight sensitivity is used for the robust design of the reactor power control system. The mixed weight sensitivity method requires the selection of the proper weighting functions for the loop shaping in frequency domain. The complexity of the system equation and the non-convexity of the problem make it very difficult to determine the weighting functions. The genetic algorithm which is improved and hybridized with the simulated annealing is applied to determine the weighting functions. This approach permits an automatic calculation and the resultant system shows good robustness and performance.

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개선된 FIR QMF 뱅크의 설계 방법 (An Improved Design Method of FIR Quadrature Mirror-Image Filter Banks)

  • 조병모;김영수
    • 한국통신학회논문지
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    • 제29권2C호
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    • pp.213-221
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    • 2004
  • 본 논문에서는 저지연 특성을 갖는 2 채널 FIR QMF 뱅크를 시간 영역에서 가중 함수를 이용해서 설계하는 새로운 방법을 제안한다. QMF 뱅크를 설계할 때에 본 논문에서 사용한 가중 함수는 QMF의 반복 설계 과정에서 얻어진 이전의 필터 계수 벡터를 이용하여 계산한다. 그리고 기존의 방법에서는 왜곡이 생기는 주파수 대역은 천이 대역에서 왜곡이 생기는 특정 주파수 대역을 이용하지만 본 논문에서는 통과 대역과 저지 대역 에지 주파수를 이용한다. 통과 대역과 저지 대역 에지 주파수를 이용함으로써 왜곡이 생기는 특정 주파수 대역을 조사할 필요가 없는 장점이 있다. QMF 뱅크 설계에 적용하기 위해서 제안된 방법의 성능 결과를 기존의 방법과 비교하였으며, 가중 함수와 통과 및 저지 대역 에지 주파수를 이용한 제안된 방법이 가중 함수를 계산하기 때문에 기존의 방법에 비해 연산 성능은 떨어지지만 재생 오차는 최대 0.001[dB], 통과 대역 리플은 0.003[dB] 그리고 백색 잡음에 대한 SNR은 71[dB], 스텝 입력에 대한 SNR은 32[dB] 증가했다.

Decoupling of the Secondary Saliencies in Sensorless PMSM Drives using Repetitive Control in the Angle Domain

  • Wu, Chun;Chen, Zhe;Qi, Rong;Kennel, Ralph
    • Journal of Power Electronics
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    • 제16권4호
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    • pp.1375-1386
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    • 2016
  • To decouple the secondary saliencies in sensorless permanent magnet synchronous machine (PMSM) drives, a repetitive control (RC) in the angle domain is proposed. In this paper, the inductance model of a concentrated windings surface-mounted PMSM (cwSPMSM) with strong secondary saliencies is developed. Due to the secondary saliencies, the estimated position contains harmonic disturbances that are periodic relative to the angular position. Through a transformation from the time domain to the angle domain, these varying frequency disturbances can be treated as constant periodic disturbances. The proposed angle-domain RC is plugged into an existing phase-locked loop (PLL) and utilizes the error of the PLL to generate signals to suppress these periodic disturbances. A stability analysis and parameter design guidelines of the RC are addressed in detail. Finally, the proposed method is carried out on a cwSPMSM drive test-bench. The effectiveness and accuracy are verified by experimental results.

Frequency-Domain Circuit Model and Analysis of Coupled Magnetic Resonance Systems

  • Huh, Jin;Lee, Wooyoung;Choi, Suyong;Cho, Gyuhyeong;Rim, Chuntaek
    • Journal of Power Electronics
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    • 제13권2호
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    • pp.275-286
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    • 2013
  • An explicit frequency-domain circuit model for the conventional coupled magnetic resonance system (CMRS) is newly proposed in this paper. Detail circuit parameters such as the leakage inductances, magnetizing inductances, turn-ratios, internal coil resistances, and source/load resistances are explicitly included in the model. Accurate overall system efficiency, DC gain, and key design parameters are deduced from the model in closed form equations, which were not available in previous works. It has been found that the CMRS can be simply described by an equivalent voltage source, resistances, and ideal transformers when it is resonated to a specified frequency in the steady state. It has been identified that the voltage gain of the CMRS was saturated to a specific value although the source side or the load side coils were strongly coupled. The phase differences between adjacent coils were ${\pi}/2$, which should be considered for the EMF cancellations. The analysis results were verified by simulations and experiments. A detailed circuit-parameter-based model was verified by experiments for 500 kHz by using a new experimental kit with a class-E inverter. The experiments showed a transfer of 1.38 W and a 40 % coil to coil efficiency.