• 제목/요약/키워드: Landing Position

검색결과 107건 처리시간 0.026초

레이저 빔 궤적을 이용한 자동 랜딩 시스템 (Automatic Landing System using a Trajectory of Laser Beam)

  • 황진아;남기군;이장명
    • 제어로봇시스템학회논문지
    • /
    • 제13권1호
    • /
    • pp.39-45
    • /
    • 2007
  • This paper proposes a method of container position measurement using automatic landing system that is estimated by a laser range finder. In the most of container position measurement methods, CCD cameras or laser scanners have been used to get the source data. However those sensors are not only weak for disturbances, for examples, the light, fog, and rain, but also the system cost is high. When the spreader arrives at the goal position, it is still swung by inertia or by wind effect. In this paper, the spreader swung data have been used to find the container position. The laser range finder is equipped in the front side of spreader. It can measure distance and relative position between spreader and container. This laser range finder can be rotated as desired by a motor. And a tilt sensor is equipped on the spreader to measure spreader sway. The relative position information between the spreader and a container using the laser range finder and tilt sensor is estimated through the geometrical analysis.

컨테이너의 자동랜딩을 위한 레이저센서 기반의 절대위치 검출 알고리즘: 3차원 측정 (Part I) (Position Detection Algorithm for Auto-Landing Containers by Laser-Sensor, Part I: 3-D Measurement)

  • 홍금식;임성진;홍경태
    • 한국해양공학회지
    • /
    • 제21권4호
    • /
    • pp.45-54
    • /
    • 2007
  • In the context of auto-landing containers from a container ship to a truck or automatic guided vehicle and vice versa, this research investigates three schemes, one in Part I and two in Part II, for measuring the absolute position of a container. Coordinate transformations between the reference-coordinate, sensor-coordinate, and body-coordinate systems are briefly discussed. The scheme explored in Part I aims the use of three laser-slit sensors, which are relatively inexpensive. In this case, nine nonlinear equations are formulated for six unknown variables (three for orientation and three for position), so a closed-form solution is not available. Instead, an approximate solution through linearization was derived. An advantage of the method in Part I is its ability to measure an absolute position in 3D space, while a disadvantage is the computation time required to obtain pseudo-inverses and the approximate nature of the obtained solution. Numerical examples are provided.

비행기지 PAR을 이용한 DGPS 공항 접근 및 착륙 정확도 분석 (Analysis of DGPS Approach and Landing Accuracy using Air Base Precision Approach Radar)

  • 구정;표상호;강경성;김기형
    • 한국군사과학기술학회지
    • /
    • 제14권5호
    • /
    • pp.788-797
    • /
    • 2011
  • This paper analyzes the accuracy on the approach and landing of aircraft to an airport through comparison with airbase Precision Approach Radar and aircraft track data of DGPS equipped in aircraft. The proposed analysis result could be a basis for verifying the possibility that DGPS can be utilized in Airbase precision approach and landing. Position identification capability of widely used commercial DGPS is fairly accurate on latitude and longitude, while there is a slight error for being used in an airbase accurate approach and landing of Category I precision when it comes to altitude. Thus, we tested accuracy by analyzing actual flight track data of high performance aircraft to verify the accuracy of the airbase approach and landing using DGPS. Through the research, we developed instrumentation to compare PAR track data with DGPS track data, which can be used in reducing the number of PAR verification Flight utilizing it as a system measuring PAR accuracy at PAR installation phase.

미지 환경에서의 깊이지도를 이용한 쿼드로터 착륙방식 성능 비교 (Performance Comparison of Depth Map Based Landing Methods for a Quadrotor in Unknown Environment)

  • 최종혁;박종호;임재성
    • 한국항공우주학회지
    • /
    • 제50권9호
    • /
    • pp.639-646
    • /
    • 2022
  • 본 논문은 사전에 알려지지 않은 환경에서 깊이지도를 이용하여 정보를 획득하고, 이를 기반으로 쿼드로터의 착륙 선택 알고리즘 성능을 분석한다. 무인항공기의 유도 및 제어시스템은 궤적 계획 유도시스템과 위치 및 자세 제어기로 구성된다. 아래를 향하는 짐벌 시스템에 부착된 스테레오 비전 센서가 획득한 깊이 정보를 이용하여 착륙 지점을 선정한다. 평탄도 정보는 사전 정의된 깊이지도 영역의 최대 깊이 차이 및 UAV와의 거리를 고려하여 산출한다. 본 논문에서는 3가지 착륙 방법을 제안하며 다양한 성능지수들을 활용하여 성능을 비교한다. 성능지수로는 UAV 이동 거리, 지도 정확도, 장애물 대응 시간 등을 고려한다.

Multibody simulation and descent control of a space lander

  • Pagani, A.;Azzara, R.;Augello, R.;Carrera, E.
    • Advances in aircraft and spacecraft science
    • /
    • 제7권2호
    • /
    • pp.91-113
    • /
    • 2020
  • This paper analyzes the terminal descent phase of a space lander on a surface of a celestial body. A multibody approach is adopted to build the physical model of the lander and the surface. In this work, a legged landing gear system is considered. Opportune modelling of the landing gear crashbox is implemented in order to accurately predict the kinetic energy. To ensure the stability of the lander while impacting the ground and to reduce the contact forces that arise in this maneuver, the multibody model makes use of a co-simulation with a dedicated control system. Two types of control systems are considered; one with only position variables and the other with position and velocity variables. The results demonstrate the good reliability of modern multibody technology to incorporate control algorithms to carry out stability analysis of ground impact of space landers. Moreover, from a comparison between the two control systems adopted, it is shown how the velocity control leads to lower contact forces and fuel consumption.

드롭랜딩 시 심박수 증가에 따른 하지의 생체역학적 차이 분석 (Analysis on Biomechanical Differences in Lower Limbs Caused by Increasing Heart Rates During Drop-landing)

  • 홍완기;김도은
    • 한국운동역학회지
    • /
    • 제25권2호
    • /
    • pp.141-147
    • /
    • 2015
  • Objective : This study aimed to understand how increased heart rates at the time of drop landing during a step test would affect biomechanical variables of the lower extremity limbs. Background : Ballet performers do more than 200 landings in a daily training. This training raises the heart rate and the fatigability of the lower extremity limbs. Ballet performance high heart rate can trigger lower extremity limb injury. Method : We instructed eight female ballet dancers with no instability in their ankle joints(mean ${\pm}$ SD: age, $20.7{\pm}0.7yr$; body mass index, $19.5{\pm}1.2kg/m^2$, career duration, $8.7{\pm}2.0yr$) to perform the drop landing under the following conditions: rest, 60% heart rate reserve (HRR) and 80% HRR. Results : First, the study confirmed that the increased heart rates of the female ballet dancers did not affect the working ranges of the knee joints during drop landing but only increased angular speeds, which was considered a negative shock-absorption strategy. Second, 80% HRR, which was increased through the step tests, led to severe fatigue among the female ballet dancers, which made them unable to perform a lower extremity limb-neutral position. Hence, their drop landing was unstable, with increased introversion and extroversion moments. Third, we observed that the increasing 80% HRR failed to help the dancers effectively control ground reaction forces but improved the muscular activities of the rectus femoris and vastus medialis oblique muscles. Fourth, the increasing heart rates were positively related to the muscular activities of the vastus medialis oblique and rectus femoris muscles, and the extroversion and introversion moments. Conclusion/Application : Our results prove that increased HRR during a step test negatively affects the biomechanical variables of the lower extremity limbs at the time of drop landing.

Analysis of landing mission phases for robotic exploration on phobos mar's moon

  • Stio, A.;Spinolo, P.;Carrera, E.;Augello, R.
    • Advances in aircraft and spacecraft science
    • /
    • 제4권5호
    • /
    • pp.529-541
    • /
    • 2017
  • Landing phase is one of the crucial and most important phases during robotic aerospace explorations. It concerns the impact of the landing module of a spacecraft on a celestial body. Risks and uncertainties of landing are mainly due to the morphology of the surface, the possible presence of rocks and other obstacles or subsidence. The present work quotes results of a computational analysis direct to investigate the stability during the landing phase of a lander on Phobos, a Mars Moon. The present study makes use of available software tools for the simulation analyses and results processing. Due to the nature of the system under consideration (i.e., large displacements and interaction between several systems), multibody simulations were performed to analyze the lander's behavior after the impact with the celestial body. The landing scenario was chosen as a result of a DOE (Design of Experiments) analysis in terms of lander velocity and position, or ground slope. In order to verify the reliability of the present multibody methodology for this particular aerospace issue, two different software tools were employed in order to emphasize two different ways to simulate the crash-box, a particular component of the system used to cushion the impact. The results show the most important frames of the simulations so as to provide a general idea about how lander behaves in its descent and some trends of the main characteristics of the system. In conclusion, the success of the approach is demonstrated by highlighting that the results (crash-box shortening trend and lander's kinetic energy) are comparable between the two tools and that the stability is ensured.

달착륙선 충격흡수 착륙장치 개발동향 (Development Trend of Shock-Absorbing Landing gear for Lunar Lander)

  • 김원석;김선원;황도순
    • 항공우주산업기술동향
    • /
    • 제9권1호
    • /
    • pp.119-129
    • /
    • 2011
  • 달착륙선이 주어진 임무를 수행하기 위해서는 달궤도 진입 후 성공적인 착륙이 보장되어야 한다. 착륙환경에서 발생되는 높은 충격하중 하에서 착륙선 본체 및 탑재체의 파손을 막기 위해서는 높은 충격흡수율 및 자세 안정성이 요구된다. 따라서 착륙 시 발생하는 충격을 효과적으로 흡수하면서 기체의 전복 및 쓰러짐을 막을 수 있는 착륙장치는 달착륙선의 핵심 구성요소이다. 본 논문에서는 현재까지 달착륙에 성공한 달착륙선과 현재 개발단계에 있는 달착륙선을 대상으로 다양한 착륙장치 설계안들을 검토 및 비교하였으며, 현재 진행되고 있는 한국형 달탐사선 예비설계요구조건에 부합하는 착륙장치의 요구조건 및 이를 충족시킬 수 있는 착륙장치 설계에 대한 예를 제시하고자 한다.

  • PDF

Effects of Landing Foot Orientations on Biomechanics of Knee Joint in Single-legged Landing

  • Joo, Ji-Yong;Kim, Young-Kwan
    • 한국운동역학회지
    • /
    • 제28권2호
    • /
    • pp.143-149
    • /
    • 2018
  • Objective: This study aimed to investigate the influence of landing foot orientations on biomechanics of knee joint in order to identify vulnerable positions to non-contact knee injuries during single-legged landing. Method: Seventeen men (age: $20.5{\pm}1.1 years$, height: $175.2{\pm}6.4cm$, weight: $68.8{\pm}5.8kg$) performed single-leg drop landings repeatedly with three different landing foot orientations. They were defined as toe-in (TI) $30^{\circ}$ adduction, neutral (N, neutral), and toe-out (TO) $30^{\circ}$ abduction positions. Results: The downward phase time of TI was significantly shorter than those of N and TO. The flexion and valgus angle of N was greater than those of TI and TO at the moment of foot contact. At the instance of maximum knee flexion, N showed the largest flexion angle, and TO position had the largest varus and external rotation angles. Regarding ground reaction force (GRF) at the moment of foot contact, TO showed the forward GRF, while others showed the backward GRF. TI indicated significantly larger mediolateral GRF than others. As for the maximum knee joint force and joint moment, the main effect of different foot positions was not significant. Conclusion: TI and TO might be vulnerable positions to knee injuries because both conditions might induce combined loadings to knee joint. TI had the highest mediolateral GRF with a shortest foot contact time, and TO had induced a large external rotation angle during downward phase and the peak forward GRF at the moment of foot contact. Conclusively, N is the preferred landing foot orientation to prevent non-contact knee injuries.

우리 문장 읽기에서 안구 운동의 특성: 어절 길이, 단어 빈도 및 착지점 관련 효과 (The characteristics of eye-movement in Korean sentence reading: cluster length, word frequency, and landing position effects)

  • 고성룡;윤낙영
    • 인지과학
    • /
    • 제18권4호
    • /
    • pp.325-350
    • /
    • 2007
  • 본 연구에서는 대학생 독자들이 48개의 평이한 문장을 읽을 때, 전반적인 안구 운동의 특성과 어절/단어 수준에서의 특성을 알아보았다 대학생 독자들은 어절을 대략 225ms 보다가 3.6자 정도 뛰어 다음 어절로 눈을 움직였다. 어절이 짧고 단어가 고빈도일 때는 어절을 건너뛰기도 하고, 앞으로만 읽어가는 것이 아니라 19% 정도 다시 되돌아가서 읽기도 했다. 물론 고정과 도약의 양상은 독자에 따라 개인차가 있었다. 이런 전반적인 양상과 더불어, 어절 수준에서 어절 길이, 단어 빈도 및 착지점 관련 효과를 살펴보았는데, 눈은 대체로 어절의 중앙에 자주 착지했으며, 가장자리에 착지했을 때가 중앙에 착지할 때보다 그 어절을 다시 더 고정했다. 또한 독자들은 단어가 고빈도인 어절을 저빈도인 어절보다 훨씬 빨리 읽었다.

  • PDF