• 제목/요약/키워드: Rotational transmission beam

검색결과 7건 처리시간 0.018초

소나 송신기의 회전 송신빔 구동을 위한 효율적인 출력 제어 기법 연구 (A Study on Effective Output Control Technique for Rotational Transmission Beam Drive of Sonar Transmitter)

  • 이병화
    • 한국음향학회지
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    • 제31권5호
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    • pp.280-287
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    • 2012
  • 본 논문은 능동 소나 송신기의 효율적인 회전 송신빔 구동을 위하여 부하인 원통형 배열센서의 회전 방위별 동적 임피던스 특성을 실험적으로 분석하고 최대 전력이 부하에 효과적으로 전송되도록 송신기의 출력을 실시간으로 제어하는 기법에 관한 연구이다. 회전 송신빔 구동시, 전기적, 음향적 경계조건에 의해 발생하는 과부하 조건에서 배열센서의 실시간 임피던스 변화와 송신기의 출력 거동 특성을 분석하였다. 그 결과로부터 과도 특성에서도 송신 중단 없이, 송신기와 부하를 보호하면서 송출되는 전력량을 최대화할 수 있는 새로운 송신 출력 제어 기법을 제안하고 실험을 통하여 제안된 기법을 검증하였다.

진동 절연계에서 절연요소 회전강성계수가 고주파수 대역 진동파워 전달에 미치는 영향 (Effects of Rotational Stiffness of Isolators on Vibration Power Transmission in Vibration Isolation Systems over High Frequency Range)

  • 김진성;이호정;김광준
    • 한국소음진동공학회논문집
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    • 제13권5호
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    • pp.375-383
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    • 2003
  • For a performance analysis of vibration isolation systems, the concept of vibration power flow can be employed preferably when noise radiated from the supporting structure with finite impedances is of interest. The idea is basically simple to understand and formulas for precise estimation of the vibration power are easy to derive. However, It is often required to simplify the process of experimentation under several assumptions due to instrumental limitations. For an example, rotational degree of freedom has not been well treated in bending vibrations of beam or plate-like structures. Yet, several recent studies showed that the moments and rotations play an important role in power transmission and should be taken into consideration carefully as the frequency range of interest goes to audibly high. Therefore, it is readily agreed that reduction of the noise radiation over the high frequency range can be effectively accomplished by adjusting the rotational stiffness of the isolator without changing the vibration isolator efficiency in low frequency range relevant to the translational stiffness of the isolator In this paper, the vibration power flow approach is applied to an AC motor installed on a finite plate in order to illustrate the contribution of the rotational vibration power to the total vibration power transmission. The effects of rotational stiffness of the isolator on the vibration power transmission are investigated by inserting various shapes of Isolators with different rotational stiffness but with $ame translational stiffness between the motor and the plate. The resultant noise radiation from the plate is presented to verify the proposed approach.

셀 경계 단말의 성능 향상을 위한 회전성 빔 방향 패턴의 활용 (Utilization of Rotational Beam Direction Patterns for Performance Enhancement of Cell Boundary UEs)

  • 이동현;성원진
    • 전자공학회논문지
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    • 제50권11호
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    • pp.12-20
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    • 2013
  • 셀룰러 이동통신 시스템의 용량과 커버리지를 향상시키기 위한 많은 연구 결과들이 시스템에 적용되었지만, 셀 경계에서의 심각한 성능 열화는 여전히 단말 전송률의 더 나은 향상을 가로막는 주요한 요인으로 남아있다. 3GPP (Third Generation Partnership Project)의 LTE-A (Long Term Evolution-Advanced) 표준에서는 협력적 전송 (CoMP, coordinated-multipoint transmission reception)과 ICIC (inter-cell interference coordination)와 같은 진보된 기술들이 셀 경계 성능 열화 문제를 해결하기 위해 소개되었다. 본 논문에서는 다수개의 빔 방향 패턴 (BDP, beam direction pattern)을 활용하여 셀 경계 단말들의 성능을 향상시킬 수 있는 방안을 제안한다. 다수개의 빔 방향 패턴은 기지국에 설치된 복수 계층 안테나 어레이를 사용해 구현될 수 있다. 고정된 빔 패턴을 갖는 기존의 3섹터 안테나와 비교해서, 제안하는 방식은 다수개의 BDP들이 시간상에서 회전하면서 신호를 전송하게 된다. 이를 통해 셀 또는 섹터 경계에 위치하는 특정 단말들이 기지국으로부터 전체 전송 시간에 걸쳐 나쁜 성능의 신호를 수신하게 되는 상황을 억제함으로써, 해당 단말들의 수신 신호 품질을 향상시킬 수 있다. 성능 평가 결과는 제안하는 방식이 기존 3섹터 전송 방식에 비해 평균 단말 전송률 측면에서 하위 5% 단말에서 약 171% 향상된 성능을 나타냄을 보여준다.

Free vibration analysis of tapered FRP transmission poles with flexible joint by finite element method

  • Saboori, Behnam;Khalili, Seyed Mohammad Reza
    • Structural Engineering and Mechanics
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    • 제42권3호
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    • pp.409-424
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    • 2012
  • Since relatively low elasticity modulus of the FRP materials results in lower natural frequencies, it is necessary to study the free vibration of FRP transmission poles. In this paper, the free vibration of tapered FRP transmission poles with thin-walled circular cross-section is investigated by a tapered beam element. To model the flexible joints of the modular poles, a rotational spring model is used. Modal analysis is performed for typical FRP poles with/without joint and they are also modeled by ANSYS commercial finite element software. There is a good correlation between the results of the tapered beam finite element model and those obtained from ANSYS as well as the existing experimental results. The effects of different geometries, material lay-ups, concentrated masses at the pole tip, and joint flexibilities are evaluated. Moreover, it is concluded that using tougher fibres at the inner and outer layers of the cross-section, results in higher natural frequencies, significantly.

Transient response analysis of tapered FRP poles with flexible joints by an efficient one-dimensional FE model

  • Saboori, Behnam;Khalili, Seyed Mohammad Reza
    • Structural Engineering and Mechanics
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    • 제59권2호
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    • pp.243-259
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    • 2016
  • This research develops a finite element code for the transient dynamic analysis of tapered fiber reinforced polymer (FRP) poles with hollow circular cross-section and flexible joints used in power transmission lines. The FRP poles are modeled by tapered beam elements and their flexible joints by a rotational spring. To solve the time equations of transient dynamic analysis, precise time integration method is utilized. In order to verify the utilized formulations, a typical jointed FRP pole under step, triangular and sine pulses is analyzed by the developed finite element code and also ANSYS commercial finite element software for comparison. Thereafter, the effect of joint flexibility on its dynamic behavior is investigated. It is observed that by increasing the joint stiffness, the amplitude of the pole tip deflection history decreases, and the time of occurrence of the maximum deflection is earlier.

Advanced Nanoscale Characterization of Cement Based Materials Using X-Ray Synchrotron Radiation: A Review

  • Chae, Sejung R.;Moon, Juhyuk;Yoon, Seyoon;Bae, Sungchul;Levitz, Pierre;Winarski, Robert;Monteiro, Paulo J.M.
    • International Journal of Concrete Structures and Materials
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    • 제7권2호
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    • pp.95-110
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    • 2013
  • We report various synchrotron radiation laboratory based techniques used to characterize cement based materials in nanometer scale. High resolution X-ray transmission imaging combined with a rotational axis allows for rendering of samples in three dimensions revealing volumetric details. Scanning transmission X-ray microscope combines high spatial resolution imaging with high spectral resolution of the incident beam to reveal X-ray absorption near edge structure variations in the material nanostructure. Microdiffraction scans the surface of a sample to map its high order reflection or crystallographic variations with a micron-sized incident beam. High pressure X-ray diffraction measures compressibility of pure phase materials. Unique results of studies using the above tools are discussed-a study of pores, connectivity, and morphology of a 2,000 year old concrete using nanotomography; detection of localized and varying silicate chain depolymerization in Al-substituted tobermorite, and quantification of monosulfate distribution in tricalcium aluminate hydration using scanning transmission X-ray microscopy; detection and mapping of hydration products in high volume fly ash paste using microdiffraction; and determination of mechanical properties of various AFm phases using high pressure X-ray diffraction.

A Monitor Unit Verification Calculation in IMRT as a Dosimetry QA

  • Kung, J.H.;Chen, G.T.Y.;Kuchnir, F.T.
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.68-73
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    • 2002
  • In standard teletherapy, a treatment plan is generated with the aid of a treatment planning system, but it is common to perform an independent monitor unit verification calculation (MUVC). In exact analogy, we propose and demonstrate that a simple and accurate MUVC in Intensity Modulated Radiotherapy (IMRT) is possible. We introduce a concept of Modified Clarkson Integration (MCI). In MCI, we exploit the rotational symmetry of scattering to simplify the dose calculation. For dose calculation along a central axis (CAX), we first replace the incident IMRT fluence by an azimuthally averaged fluence. Second, the Clarkson Integration is carried over annular sectors instead of over pie sectors. We wrote a computer code, implementing the MCI technique, in order to perform a MUVC for IMRT purposes. We applied the code to IMRT plans generated by CORVUS. The input to the code consists of CORVUS plan data (e.g., DMLC files, jaw settings, MU for each IMRT field, depth to isocenter for each IMRT field), and the output is dose contribution by individual IMRT field to the isocenter. The code uses measured beam data for Sc, Sp, TPR, (D/Mu)$\_$ref/ and includes effects from MLC transmission, and radiation field offset. On a 266 MHZ desktop computer, the code takes less than 15 sec to calculate a dose. The doses calculated with MCI algorithm agreed within +/- 3% with the doses calculated by CORVUS, which uses a 1cm x 1cm pencil beam in dose calculation. In the present version of MCI, skin contour variations and inhomogeneities were neglected.

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