• 제목/요약/키워드: Sinusoidal frequency

검색결과 609건 처리시간 0.04초

정현파 모델링을 이용한 폴리포닉 오디오 신호의 시간축 변화 (Time-Scale Modification of Polyphonic Audio Signals Using Sinusoidal Modeling)

  • 장호근;박주성
    • 한국음향학회지
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    • 제20권2호
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    • pp.77-85
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    • 2001
  • 본 논문에서는 폴리포닉 음과 같은 복잡한 스펙트럼을 갖는 오디오 신호를 정현파 성분으로 모델링하고, 이를 바탕으로 고음질의 시간축 변화된 음을 얻는 방법을 제안한다. 입력 신호는 옥타브 밴드 구조의 다중 해상도 필터 뱅크를 통과하고 여기에서 나온 각 서브밴드 신호로부터 정현파 성분이 축출된다. 서브밴드 신호의 정현파 분석시 정현파 성분을 추출하는 구간의 크기를 국지적인 신호의 특성에 따라 다르게 해 주는 동적 세그멘테이션 방법을 적용한다. 이렇게 함으로써 기존 정현파 모델링에서 신호의 천이 구간에서 발생하는 퍼짐 현상을 개선하고, 시간축 변화 시에도 원래 음에 가까운 음질을 얻을 수 있다. 정현파 분석을 위한 스펙트럼 분석 도구로는 심리 음향 모델을 적용한 matching pursuit을 사용함으로써 정현파 성분의 갯수를 줄이고, matching pursuit의 반복 과정에 대한 합리적인 정지 조건을 제공할 수 있다. 정현파 성분으로 표현하기 어려운 신호의 잡음 성분은 원래 신호에서 정현파 성분으로 합성된 신호를 뺀 것으로 얻을 수 있으며, 스펙트럼 포락선 근사화 방법으로써 모델링된다. 본 논문의 알고리즘을 적용해 다양한 폴리포닉 음에 대해 실험한 결과 제안한 정현파 모델링 방법이 원래 신호의 음질을 잘 복원할 수 있고, 시간축 변화율이 큰 경우에도 신호의 천이 구간을 잘 표현할 수 있음을 확인하였다.

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Programmable Ministep Drive

  • Thedmolee, Sunhapitch;Pongswatd, Sawai;Kummool, Sart;Ukakimapurn, Prapart
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2003년도 ICCAS
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    • pp.2274-2277
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    • 2003
  • A cylindrical permanent magnet inside the four-phase permanent magnet (PM) stepping motor is employed as the rotor. The stator has four teeth around, which its coils are wound. The mode of excitation can be classified into 3 modes: single-phase excitation, two-phase excitation and ministep excitation. The ministep drive is a method to subdivide one step into several small steps by means of electronics. The paper presents the programmable ministep technique drive. This technique decodes the results obtained from the counter to locate the data in Read Only Memory (ROM). The Sinusoidal Pulse Width Modulation (SPWM) is transformed to binary file and saved to the ROM. The experiment is performed with the four-phase PM stepping motor and drives from a two-phase programmable sinusoidal ministep signal, instead of square wave. The results show that the performances of the proposed programmable ministep technique drive have high efficiency, smooth step motion, and high speed response. Moreover, the resolution of sinusoidal ministep signal can be controlled by the input frequency (f command).

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Small-Signal Modeling and Control of Three-Phase Bridge Boost Rectifiers under Non-Sinusoidal Conditions

  • Chang, Yuan;Jinjun, Liu;Xiaoyu, Wang;Zhaoan, Wang
    • Journal of Power Electronics
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    • 제9권5호
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    • pp.757-771
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    • 2009
  • This paper proposes a systematic approach to the modeling of the small-signal characteristics of three-phase bridge boost rectifiers under non-sinusoidal conditions. The main obstacle to the conventional synchronous d-q frame modeling approach is that it is unable to identify a steady-state under non-sinusoidal conditions. However, for most applications under non-sinusoidal conditions, the current loops of boost rectifiers are designed to have a bandwidth that is much higher than typical harmonics frequencies in order to achieve good current control for these harmonic components. Therefore a quasi-static method is applied to the proposed modeling approach. The converter small-signal characteristics developed from conventional synchronous frame modeling under different operating points are investigated and a worst case point is then located for the current loop design. Both qualitative and quantitative analyses are presented. It is observed that operating points influence the converter low frequency characteristics but hardly affect the dominant poles. The relationship between power stage parameters, system poles and zeroes is also presented which offers good support for the system design. Both the simulation and experimental results verified the analysis and proposed modeling approach. Finally, the practical case of a parallel active power filter is studied to present the modeling approach and the resultant regulator design procedure. The system performance further verifies the whole analysis.

A-mode 불안정성 영역에서 교란유동장에 놓인 원형실린더 후류의 천이지연과 유동공진의 발생 (Suppression of Wake Transition and Occurrence of Lock-on Downstream of a Circular Cylinder in a Perturbed Flow in the A-mode Instability Regime)

  • 김수현;배종헌;유정열
    • 대한기계학회논문집B
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    • 제31권8호
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    • pp.702-710
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    • 2007
  • Direct numerical simulation (DNS) is performed to investigate suppressed wake transition and occurrence of lock-on in the wake of a circular cylinder disturbed by sinusoidal perturbation at the Reynolds number of 220 (A-mode instability regime). The sinusoidal perturbation, of which the frequency is near twice the natural shedding frequency, is superimposed on the free stream velocity. It is shown that the wake transition behind the circular cylinder can be suppressed due to the perturbation of the free stream velocity. This change causes a jump in the Strouhal number from the value corresponding to A-mode instability regime to the value corresponding to retarded wake transition regime (extrapolated from laminar shedding regime) in the Strouhal-Reynolds number relationship. As a result, vortex shedding frequency is locked on the perturbation frequency depending not on the natural shedding frequency but on the modified shedding frequency.

고속 수중운동체 탐지를 위한 일반화된 사인파 주파수 변조 기반 고해상도 거리 및 속도 추정 기법 (High-resolution range and velocity estimation method based on generalized sinusoidal frequency modulation for high-speed underwater vehicle detection)

  • 박진욱;김근환;석종원;홍정표
    • 한국음향학회지
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    • 제42권4호
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    • pp.320-328
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    • 2023
  • 고속 수중운동체 능동 탐지는 수중 무기 방어 시스템에 중요한 기술로, 정확한 표적 탐지와 거리 및 속도 추정이 필수적이다. 빔 형성 각도마다 신호를 순차적으로 송신해야 하지만 펄스 분할 송신 방법은 거리 추정의 모호성이 발생한다. 이를 보완하기 위해 다중 주파수 기반 방법이 제안되었지만 대역폭을 분할할 경우 시간-대역폭 곱에서 손실이 발생한다. 이러한 문제를 해결하기 위해, 본 연구에서는 대역폭을 분할하지 않아도 부펄스 간의 상관관계를 낮게 설계할 수 있는 일반화된 사인파 주파수 변조(Generalized Sinusoidal Frequency Modulation, GSFM)를 사용한 능동 고속 탐지 기법을 제안한다. 제안한 방법은 펄스 길이를 최소화시킨 GSFM을 사용함으로써 표적의 거리와 속도를 빠르게 갱신할 수 있다. 제안한 방법의 성능을 검증하기 위해 잔향이 존재하는 모의 환경을 구축하였다. 모의 실험 결과 0.05 s의 선형 주파수 변조 펄스는 한정적인 주파수 대역으로 인해 추정 거리 대비 평균적으로 50 %의 거리 추정 오차와 103 %의 속도 추정오차가 발생하였다. 이에 반해, GSFM은 같은 길이의 펄스를 사용하더라도 추정 거리 대비 거리 추정 오차와 속도 추정 오차가 각각 10 %와 14 %로 표적을 비교적 정확하고 빠르게 추적할 수 있었다. 게다가, GSFM은 방위별로 직교성이 높은 부펄스를 송신하여 표적의 대략적인 방위까지 알 수 있었다.

구동회로에 따른 박형 초음파모터의 동작특성

  • 정성수;정현호;박민호;박태곤
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2009년도 추계학술대회 논문집
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    • pp.109-109
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    • 2009
  • This paper represented driving characteristic of a thin-type ultrasonic motor by fabricating and utilizing two kinds of drivers which could generate sinusoidal wave, square wave, respectively. A thin brass plate was used as a cross shaped vibrator and sixteen ceramic plates were attached on upper and bottom side of the brass plate. From the thin stator, elliptical displacements of the four contact tips were obtained. Speed, torque, and current were measured by applying sinusoidal waves through driving equipment such as function generator, power amplifier: to measure characteristic of the motor. As a result, the speed and the torque changed linearly at either driving frequency of 88.6 ~ 87.6[kHz] or voltage of 24~36[V]. Two-drivers which generate sinusoidal waves and square waves were designed respectively, and then were compared through some experiments in order to be put to practical use. In conclusion, the drivers had similar characteristic of speed-torque at similar frequency and voltage. It was able to control the motor linearly by using the driver generating square wave among two-drivers. Besides, it also was possible to make the drivers smaller.

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교류 전압 구동에 의한 유기 발광 소자의 발광 특성 연구 (Light-Emission Characteristics of Organic Light-Emitting Diodes Driven by Alternating Current)

  • 권오태;김태완
    • 한국전기전자재료학회논문지
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    • 제29권10호
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    • pp.625-629
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    • 2016
  • Electrical and optical properties of the AC voltage driven organic light-emitting diodes were investigated by measuring the electroluminescence of the device. Device structure of ITO(170 nm)/TPD(40 nm)/Alq3(60 nm)/LiF(0.5 nm)/Al(100 nm) was manufactured using a thermal evaporation. Sinusoidal and square-type AC voltage was applied to the device using a function generator. Amplitude of the applied voltage was 9.0 V, and a frequency was varied from 50 Hz to 50 kHz. Electroluminescence out of the device was measured in a Si photodetector simultaneously with the applied voltage together. An intensity and a delayed residual luminescence from the device were depended on the frequency of the sinusoidal voltage. It is thought to be due to a contribution of the capacitive nature in the equivalent circuit of the device. An electron mobility was estimated using a time constant obtained from the luminescence of the device driven by the square-type AC voltage.

무정전 전원(UPS)설계를 위한 PWN 인버터에 관한 연구 (A Study on the PWN Inverter for the Design of UPS)

  • 이성백;구용회;이종규
    • 한국조명전기설비학회지:조명전기설비
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    • 제2권2호
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    • pp.59-63
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    • 1988
  • 고정 AC 전력전원에서 PWN(Pulse Width Modulation) 기법은 전압과 기본파 주파수를 가변 시키는 데 이용되어 왔다. 종래의 PWN 기법은 전류수, 필터크기 등의 문제점 때문에 PWN 출력 전압파형을 모터 구동 등의 제어 대상에 응용하는 연구가 진행되었다. 그러나 본 논문에서는 출력단 고속 스윗칭 소자를 사용하여 캐리어 주파수를 10(KHz)-45(KHz)까지 정현 PWN 시키고, 인버터의 출력단 파형은 소용량LPF(Low Pass Filter)를 사용하여 PAM(Pulse Amplitude Modulation)을 얻어냈다. 정현 PWN 제어 회로는 속응성과 제어성을 고려하여 마이크로 프로세서와 아날로그 회로로 혼합구성 하였다. 그리고 실험 결과는 변조도 0.6-1.0까지 변할 때 전압 파형을 관찰했다.

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Nonlinear vibration analysis of a nonlocal sinusoidal shear deformation carbon nanotube using differential quadrature method

  • Pour, Hasan Rahimi;Vossough, Hossein;Heydari, Mohammad Mehdi;Beygipoor, Gholamhossein;Azimzadeh, Alireza
    • Structural Engineering and Mechanics
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    • 제54권6호
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    • pp.1061-1073
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    • 2015
  • This paper presents a nonlocal sinusoidal shear deformation beam theory (SDBT) for the nonlinear vibration of single walled carbon nanotubes (CNTs). The present model is capable of capturing both small scale effect and transverse shear deformation effects of CNTs, and does not require shear correction factors. The surrounding elastic medium is simulated based on Pasternak foundation. Based on the nonlocal differential constitutive relations of Eringen, the equations of motion of the CNTs are derived using Hamilton's principle. Differential quadrature method (DQM) for the natural frequency is presented for different boundary conditions, and the obtained results are compared with those predicted by the nonlocal Timoshenko beam theory (TBT). The effects of nonlocal parameter, boundary condition, aspect ratio on the frequency of CNTs are considered. The comparison firmly establishes that the present beam theory can accurately predict the vibration responses of CNTs.

Active control of three-phase CNT/resin/fiber piezoelectric polymeric nanocomposite porous sandwich microbeam based on sinusoidal shear deformation theory

  • Navi, B. Rousta;Mohammadimehr, M.;Arani, A. Ghorbanpour
    • Steel and Composite Structures
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    • 제32권6호
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    • pp.753-767
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    • 2019
  • Vibration control in mechanical equipments is an important problem where unwanted vibrations are vanish or at least diminished. In this paper, free vibration active control of the porous sandwich piezoelectric polymeric nanocomposite microbeam with microsensor and microactuater layers are investigated. The aim of this research is to reduce amplitude of vibration in micro beam based on linear quadratic regulator (LQR). Modified couple stress theory (MCST) according to sinusoidal shear deformation theory is presented. The porous sandwich microbeam is rested on elastic foundation. The core and face sheet are made of porous and three-phase carbon nanotubes/resin/fiber nanocomposite materials. The equations of motion are extracted by Hamilton's principle and then Navier's type solution are employed for solving them. The governing equations of motion are written in space state form and linear quadratic regulator (LQR) is used for active control approach. The various parameters are conducted to investigate on the frequency response function (FRF) of the sandwich microbeam for vibration active control. The results indicate that the higher length scale to the thickness, the face sheet thickness to total thickness and the considering microsensor and microactutor significantly affect LQR and uncontrolled FRF. Also, the porosity coefficient increasing, Skempton coefficient and Winkler spring constant shift the frequency response to higher frequencies. The obtained results can be useful for micro-electro-mechanical (MEMS) and nano-electro-mechanical (NEMS) systems.