• 제목/요약/키워드: Translation speed

검색결과 96건 처리시간 0.031초

LIPM 을 이용한 이족 로봇의 보행 속도 변화 (Speed Translation for Walking Biped Robots using LIPM)

  • 손범규;김진탁;박종현
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.876-881
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    • 2008
  • When biped robots speed up to run and reduce speed to walk after running, it needs stable speed translation. This paper proposed simple speed translation using the modified LIPM (Linear Inverted Pendulum Mode). We can change stride and period time of a biped robot in some bounded sets with this propose algorithm. This method is simple and effective in simulation.

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고속 프로그램형 논리 제어기 구현을 위한 래더 다이어그램 해석 방법 (A Translation Method of Ladder Diagram for High-Speed Programmable Logic Controller)

  • 김형석;장래혁;권욱현
    • 제어로봇시스템학회논문지
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    • 제5권1호
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    • pp.33-38
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    • 1999
  • This paper proposes a translation approach for PLCs (Programmable logic controllers) converting ladder diagrams directly to native codes, and describes detailed steps of the method followed by performance evaluation. A general-purpose DSP (Digital signal processor) based implementation validates the approach as well. A benchmark test shows that the Proposed translation framework fairly speeds up execution in comparison with the existing interpretation approach.

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압전형 구동기를 갖는 이동기구의 운동해석 및 제어 (Motion Analysis and Control of Translation Device Driven by Piezoelectric Actuator)

  • 이석구;지원호;이종원
    • 소음진동
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    • 제2권1호
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    • pp.49-59
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    • 1992
  • The motion analysis of a translation device driven by a piezoelectric actuator is performed to identify the mechanics of impact drive mechanism and to find the maximum speed waveform. The translation device is modeled as a semidefinite two-degree-of-freedom system. The motion analysis includes effects of friction force between moving mass and contact surface, dynamics of voltage amplifier and piezoelectric elements, and hysteresis of piezoelectric actuator. Base on the model, simulation studies are carried out and then compared with experimental results. It is found that the error between moving distances obtained by analysis and experiment is less than 15% and that the actual motion of moving mass is well predicted by the analytical work, finally, precision positioning experiments are carried out by using a proximity sensor as a feedback sensor. Position control of moving mass is initiated by the maximum speed waveform and finely tuned by the scaled down waveform so that accurate positioning is accomplished within the resolution of the sensor.

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Shear Band Formation in Granular Materials with Different Particle Shapes behind a Retaining Wall

  • Zhuang, Li;Kim, Ukgie
    • 한국지반환경공학회 논문집
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    • 제14권9호
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    • pp.39-47
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    • 2013
  • Local deformations in back filling materials of two sands and one glass bead with different particle shapes behind a rigid retaining wall were studied. Two kinds of boundary conditions were compared: active wall translation and active rotation of the wall about its toe. Effect of the speed of active wall translation was also investigated. The digital image correlation method was used to analyze local deformation developments inside the materials. Test results showed that particle shape and density mainly influence the inclination angle and width of the shear band. The general shear band pattern is strongly dependent on the wall movement mode, while it was little influenced by particle shape. Within a limited range of wall speed in this study, shear band became wider and local deformation became larger with increase of wall speed.

Laboratory investigation of the effects of translation on the near-ground tornado flow field

  • Razavi, Alireza;Sarkar, Partha P.
    • Wind and Structures
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    • 제26권3호
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    • pp.179-190
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    • 2018
  • Translation of tornadoes is an important feature in replicating the near-ground tornado flow field which has been simulated in previous studies based on Ward-type tornado simulators using relative motion of the ground plane. In this laboratory investigation, effects of translation on the near-ground tornado flow field were studied using the ISU Tornado Simulator that can physically translate over a ground plane. Two translation speeds, 0.15 m/s and 0.50 m/s, that scale up to those corresponding to slowly-moving tornadoes in the field were selected for this study. Compared with the flow field of a stationary tornado, the simulated tornado with translation had an influence on the spatial distribution and magnitude of the horizontal velocities, early reversal of the radial inflow, and expansion of the core radius. Maximum horizontal velocities were observed to occur behind the center of the translating tornado and on the right side of its mean path. An increase in translation speed, resulted in reduction of maximum horizontal velocities at all heights. Comparison of the results with previous studies that used relative motion of the ground plane for simulating translating tornadoes, showed that translation has similar effects on the flow field at smaller radial distances (~2 core radius), but different effects at larger radial distances (~4 core radius). Further, it showed that the effect of translation on velocity profiles is noticeable at and above an elevation of ~0.6 core radius, unlike those in studies based on the relative motion of the ground plane.

직선 이동용 나노 미세 이동장치의 제작 (Construction of Nano-meter Scale Linear Translation System)

  • 정구은;강세종
    • 한국진공학회지
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    • 제15권5호
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    • pp.512-517
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    • 2006
  • 신뢰도 높은 나노 직선 이동장치를 제작하였다. 장치는 기본 몸체에 고정된 6개의 피에조 다리들과 이들이 붙잡고 있는 사파이어 육각기둥으로 이루어 졌다. 특정한 전압파형을 피에조 다리에 인가하여 피에조 다리를 순차적으로 움직임으로 육각기둥을 앞으로 혹은 뒤로 움직인다. 직선 이동장치를 지표면에 수직 방향으로 시험구동 하였다. 육각기둥이 수 mm를 움직이는 동안 속도가 일정함을 확인하였다. 위쪽으로 올라가는 가장 느린 속도는 $1.7{\times}10^{-6}m/s$, 즉 ${\sim}28.3nm$/걸음이었고 아래쪽으로 내려가는 가장 느린 속도는 중력의 도움을 받아 ${\sim}3.7{\times}10^{-6}m/s$, 즉 ${\sim}61.7nm$/걸음 이었다. 피에조에 인가된 전압을 증가시키면 육각기둥의 이동속도가 선형으로 증가하였다. 이 직선 이동장치를 주사형 터널링 현미경의 접근 장치로 사용할 것이다.

Geostrophic Response of the Yellow Sea to Cyclone Passage

  • Oh, Im-Sang;Subbotina, Marina M.
    • Journal of the korean society of oceanography
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    • 제31권4호
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    • pp.183-195
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    • 1996
  • A barotropic non-linear numerical model is used to study the response of the Yellow Sea to winter cyclone passage. Cyclones normally come from the outside of the western boundary, China, and pass the region eastward. The cyclone parameters used for the present study are the following: the intensity, i.e., the maximum wind speed of the cyclone; the effective radius corresponding to this maximum; and the translation speed. The equations of motion are integrated over the depth which is supposed to be a constant. The Gaussian function is used to define the stream function of the wind. The following results have been found. A northward current is generated by the frontal part of the cyclone near the western boundary. After the cyclone leaves the sea area, a southward current is generated by the rear part of the cyclone. After that, a northward current is generated once again due to the westward propagating Rossby waves. The response of the sea to the cyclone passage is strongly influenced by a steady current when the steady current and the current due to the cyclone wind are of the same order. The steady current diminishes the sea response and reduces the speed of the southward current, and enhances the northward current speed. The intensity and the translation speed of a cyclone also influence the flow pattern significantly.

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The effect of typhoon translation speed and landfall angle on the maximum surge height along the coastline

  • Qian, Xiaojuan;Son, Sangyoung
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2021년도 학술발표회
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    • pp.153-153
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    • 2021
  • Storm Storm event is one of major issues in South Korea due to devastating damage at its landfall. A series of statistical study on the historical typhoon records consistently insist that the typhoon translation speed (TS) is on slowdown trend annually, and thus provides an urgent topic in assessing the extreme storm surge under future climate change. Even though TS has been regarded as a principal contributor in storm surge dynamics, only a few studies have considered its impact on the storm surge. The landfall angle (LA), another key physical factor of storm surge also needs to be further investigated along with TS. This study aims to elucidate the interaction mechanism among TS, LA, coastal geometry, and storm surge synthetically by performing a series of simulations on the idealized geometries using Delft3D FM. In the simulation, various typhoons are set up according to different combinations of TS and LA, while their trajectories are assumed to be straight with the constant wind speed and the central pressure. Then, typhoons are subjected to make landfall over a set of idealized geometries that have different depth profiles and layouts (i.e., open coasts or bays). The simulation results show that: (i) For the open coasts, the maximum surge height (MSH) increases with increasing TS. (ii) For the constant bed level, a typhoon normal to the coastline resulted in peak MSH due to the lowest effect of the coastal wave. (iii) For the continental shelf with different widths, the slow-moving typhoon will generate the peak MSH around a small LA as the shelf width becomes narrow. (iv) For the bay, MSH enlarges with the ratio of L/E (the length of main-bay axis /gate size) dropping, while the greatest MSH is at L/E=1. These findings suggest that a fast-moving typhoon perpendicular to the coastline over a broad continental shelf will likely generate the extreme storm surge hazard in the future, as well as the slow-moving typhoon will make an acute landfall over a narrow continental shelf.

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Surface pressure measurements in translating tornado-like vortices

  • Kassab, Aya;Jubayer, Chowdhury;Ashrafi, Arash;Hangan, Horia
    • Wind and Structures
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    • 제33권6호
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    • pp.447-462
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    • 2021
  • High spatial and temporal surface pressure measurements were carried out in the state-of-the-art tornado simulator, the Wind Engineering, Energy and Environment (WindEEE) Dome, to explore the characteristics of stationary and translating tornado-like vortices (TLV) for a wide range of swirl ratios (S=0.21 to 1.03). The translational speed of the TLV and the surface roughness were varied to examine their effects on tornado ground pressures, wandering, and vortex structure. It was found that wandering is more pronounced at low swirl ratios and has a substantial effect on the peak pressure magnitude for stationary TLV (error percentage ≤ 35%). A new method for removing wandering was proposed which is applicable for a wide range of swirl ratios. For translating TLV, the near-surface part lagged behind the top of the vortex, resulting in a tilt of the tornado vertical axis at higher translating speeds. Also, a veering motion of the tornado base towards the left of the direction of the translation was observed. Wandering was less pronounced for higher translation speeds. Increasing the surface roughness caused an analogous effect as lowering the swirl ratio.

대용량 플래시 메모리를 위한 효율적인 플래시 변환 계층 시스템 소프트웨어 (An Efficient System Software of Flash Translation Layer for Large Block Flash Memory)

  • 정태선;박동주;조세형
    • 정보처리학회논문지A
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    • 제12A권7호
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    • pp.621-626
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    • 2005
  • 플래시 메모리는 비휘발성(non-volatility), 빠른 접근 속도, 저전력 소비, 그리고 간편한 휴대성 등의 장점을 가지므로 최근에 다양한 임베디드 시스템에서 많이 사용되고 있다. 그런데 플래시 메모리는 그 하드웨어 특성상 플래시 변환 계층(FTL: Flash Translation ayer)이라는 시스템 소프트웨어를 필요로 한다. 본 논문에서는 LSTAFF(Large Sate Transition Applied Fast Hash Translation Layer)라 명명된 대블록 플래시 메모리를 위한 새로운 FTL 알고리즘을 제안한다. LSTAFF는 운영체제가 다루는 데이터 섹터 크기 보다 큰 플래시 메모리의 페이지를 고려한 FTL 알고리즘이며, 기존 FTL 알고리즘과 제안될 LSTAFF를 구현하여 플래시 시뮬레이터를 이용하여 성능을 비교하였다.