• 제목/요약/키워드: impact trajectory

검색결과 175건 처리시간 0.025초

Trajectory Optimization in Consideration of Inertial Navigation Errors

  • Ryoo, Chang-Kyung;Kim, Jong-Ju;Cho, Hang-Ju
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.125.2-125
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    • 2001
  • Inertial navigation error is the major source of miss distance when only the inertial navigation system is used for guidance, and tend to monotonically increase if the flight time is small compared to the Schuler period. Miss distance due to these inertial navigation errors, therefore, can be minimized when a missile has the minimum time trajectory. Moreover, vertical component of navigation error becomes null if he impact angle to a surface target approaches to 90 degrees. In this paper, the minimum time trajectories with the steep terminal impact angle constraint are obtained by using CFSQP 2.5, and their properties are analyzed to give a guideline for he construction of an effective guidance algorithm for short range tactical surface-to-surface missiles.

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2족 보행 로봇의 보행 안정성 향상을 위한 ZPM보상 및 임피던스 제어 (ZPM Compensation and Impedance Control for Improving Walking Stability of Biped Robots)

  • 정호암;박종현
    • 대한기계학회논문집A
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    • 제24권4호
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    • pp.1007-1015
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    • 2000
  • This paper proposes an adaptive trajectory generation strategy of using on-line ZMP information and an impedance control method for biped robots. Since robots experience various disturbances during their locomotion, their walking mechanism should have the robustness against those disturbances, which requires an on-line adaptation capability. In this context, an on-line trajectory planner is proposed to compensate the required moment for recovering stability. The ZMP equation and sensed ZMP information are used in this trajectory generation strategy. In order to control a biped robot to be able to walk stably, its controller should guarantee stable footing at the moment of feet contacts with the ground as well as maintaining good trajectory tracking performance. Otherwise, the stability of robot will be significantly compromised. To reduce the magnitude of an impact and guarantee a stable footing when a foot contacts with the ground, this paper. proposes to increase the damping of the leg drastically and to modify the reference trajectory of the leg. In the proposed control scheme, the constrained leg is controlled by impedance control using the impedance model with respect to the base link. Computer simulations performed with a 3-dof environment model that consists of combination of a nonlinear and linear compliant contact model show that the proposed controller performs well and that it has robustness against unknown uneven surface. Moreover, the biped robot with the proposed trajectory generator can walk even when it is pushed with a certain amount of external force.

Anomalous Trajectory Detection in Surveillance Systems Using Pedestrian and Surrounding Information

  • Doan, Trung Nghia;Kim, Sunwoong;Vo, Le Cuong;Lee, Hyuk-Jae
    • IEIE Transactions on Smart Processing and Computing
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    • 제5권4호
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    • pp.256-266
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    • 2016
  • Concurrently detected and annotated abnormal events can have a significant impact on surveillance systems. By considering the specific domain of pedestrian trajectories, this paper presents two main contributions. First, as introduced in much of the work on trajectory-based anomaly detection in the literature, only information about pedestrian paths, such as direction and speed, is considered. Differing from previous work, this paper proposes a framework that deals with additional types of trajectory-based anomalies. These abnormal events take places when a person enters prohibited areas. Those restricted regions are constructed by an online learning algorithm that uses surrounding information, including detected pedestrians and background scenes. Second, a simple data-boosting technique is introduced to overcome a lack of training data; such a problem particularly challenges all previous work, owing to the significantly low frequency of abnormal events. This technique only requires normal trajectories and fundamental information about scenes to increase the amount of training data for both normal and abnormal trajectories. With the increased amount of training data, the conventional abnormal trajectory classifier is able to achieve better prediction accuracy without falling into the over-fitting problem caused by complex learning models. Finally, the proposed framework (which annotates tracks that enter prohibited areas) and a conventional abnormal trajectory detector (using the data-boosting technique) are integrated to form a united detector. Such a detector deals with different types of anomalous trajectories in a hierarchical order. The experimental results show that all proposed detectors can effectively detect anomalous trajectories in the test phase.

지상 전투차량의 명중률 영향요소 분석을 위한 포의 동역학 해석 (Dynamic Analysis of the Turret for Analyzing the Accuracy Impact Factor of the Ground Combat Vehicle)

  • 송재복;박강
    • 한국CDE학회논문집
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    • 제19권4호
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    • pp.340-346
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    • 2014
  • There are many factors that contribute to hit probability of the gun shot of ground combat vehicles. Aiming accuracy is mainly affected by the dynamic state of the vehicle. The stabilization error of the turret under system vibration is one of the major factors that affect the aiming accuracy. The vibration of the vehicle is affected by both the state of the road and the speed of the vehicle. This paper analyzes the aiming accuracy of the gun equipped on the GCV when the vehicle drives on the different roads and at different speed. The vertical displacement and the pitch angle of the gun are calculated and the impact points of the target are calculated. Distribution of the impact points on the target is greatly influenced by the pitch rotation rather than vertical displacement. And this aiming errors result in the errors of point of impacts on the target after the bullet flies through the air under trajectory equations. The GCV is modeled using a half-car model with 6 D.O.F. and the specifications of the M2 machine gun are used in trajectory calculation simulation and the target is located in 1000 m away from the gun.

여유 자유도 로봇의 국부 최적 경로 계획 (Locally optimal trajectory planning for redundant robot manipulators-approach by manipulability)

  • 이지홍;이한규;유준
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1996년도 한국자동제어학술회의논문집(국내학술편); 포항공과대학교, 포항; 24-26 Oct. 1996
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    • pp.1136-1139
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    • 1996
  • For on-line trajectory planning such as teleoperation it is desirable to keep good manipulability of the robot manipulators since the motion command is not given in advance. To keep good manipulability means the capability of moving any arbitrary directions of task space. An optimization process with different manipulability measures are performed and compared for a redundant robot system moving in 2-dimensional task space, and gives results that the conventional manipulability ellipsoid based on the Jacobian matrix is not good choice as far as the optimal direction of motion is concerned.

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Guidance Synthesis to Control Impact Angle and Time

  • Shin, Hyo-Sang;Lee, Jin-Ik;Tahk, Min-Jea
    • International Journal of Aeronautical and Space Sciences
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    • 제7권1호
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    • pp.129-136
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    • 2006
  • A new guidance synthesis for anti-ship missiles to control impact angle and impact time is proposed in this paper. The flight vehicle is assumed as a 1st order lag system to consider more practical system. The proposed guidance synthesis enhances the survivability of anti-ship missiles because multiple anti-ship missiles with the proposed synthesis can hit the target simultaneously. The control input to satisfy constraints of zero miss distance and impact angle, and the feedforward bias control input to control impact time constitute the guidance law. The former is from trajectory shaping guidance, the latter is from neural network. And particle swarm optimization method is introduced to furnish reference input and output for learning in neural network. The performance of the proposed synthesis in the accuracy of impact time and angle is validated by numerical examples.

PDOP 가중치 기반 정밀 탄궤적 정합 알고리즘 (A Precise Projectile Trajectory Registration Algorithm Based on Weighted PDOP)

  • 신석현;김종주
    • 한국항공우주학회지
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    • 제44권6호
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    • pp.502-511
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    • 2016
  • 최근 다양한 형태와 기능을 갖춘 스마트 무기들이 개발되고 있다. 화포탄의 경우 스마트 탄을 개발하기 위한 초기 연구로 신관 내부에 GNSS 수신기를 장착하여 탄자의 비행위치를 정밀하게 측정하고 이를 바탕으로 탄착점을 추정하는 연구가 진행되고 있다. 하지만, 수신기 성능 및 수신된 데이터에 포함된 다양한 오차유발 원인들로 인해 항법데이터의 위치정확도에 오차가 발생하게 된다. 본 논문에서는 PRODAS로부터 얻은 모의궤적 데이터를 수신기로부터 얻은 항법데이터에 포함된 PDOP 가중치를 적용하여 정합함으로써 탄의 발사부터 탄착까지의 전체 비행궤적 및 탄착점을 보다 정밀하게 추정하는 개선된 알고리즘을 소개한다.

경로 최적화 알고리즘을 이용한 3차원 차량 충돌 시뮬레이션 (Vehicle Crash Simulation using Trajectory Optimization)

  • 성진욱;고승욱;권태수
    • 한국컴퓨터그래픽스학회논문지
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    • 제21권5호
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    • pp.11-19
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    • 2015
  • 본 논문은 실제 블랙박스 영상을 통해 추적한 차량의 실제 경로 또는 사용자가 UI를 통해 그린 차량의 이동 경로를 이용하여 사실적인 3차원 차량 충돌 장면을 물리 시뮬레이션을 통해 생성하는 알고리즘을 제안한다. 시뮬레이션에 사용될 차량의 3차원 경로의 획득, 물리 기반 시뮬레이터 상에서 사용자가 원하는 경로대로 3차원 차량 모델을 적은 오차로 제어하는 경로 추적 알고리즘, 그리고 남아있는 오차를 보다 더 줄여주는 경로 최적화 알고리즘을 조합하여 사용자의 의도에 맞는 정확한 경로에서의 차량 충돌 장면을 재현하도록 도와준다. 또한 차량 충돌로 인한 차체의 변형을 차량 모델 골격의 세분화를 통하여 실시간으로 시뮬레이션 하여 실제 교통사고 시의 차량의 충돌 장면이 최대한 가상공간에서 사실적으로 재현되도록 한다.

이족보행로봇의 비충격 걸음새를 위한 제어에 관한 연구 (A study on the control for impactless gait of biped robot)

  • 박인규;김진걸
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1997년도 한국자동제어학술회의논문집; 한국전력공사 서울연수원; 17-18 Oct. 1997
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    • pp.536-539
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    • 1997
  • This paper presents a three dimensional modeling and a trajectory generation for minimized impact walking of the biped robot. Inverse dynamic analysis and forward dynamic analysis are performed considering impact force between the foot and ground for determining the actuator capacity and for simulating the proposed biped walking robot. Double support phase walking is considered for close to human's with adding the kinematic constraints on the one of the single support phase.

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Impact Analysis for Kicking Motion of a Humanoid Robot

  • Park, Jae yeon;Kim, Seong-Hoon;So, Byung-Rok;Yi, Byung-Ju;Kim, Wheekuk
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2002년도 ICCAS
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    • pp.36.6-36
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    • 2002
  • $\textbullet$ Human motion consists of continual impact with environment $\textbullet$ External impulse model of kicking motion $\textbullet$ Models of aerodynamic forces $\textbullet$ Analysis of external impulse according to posture $\textbullet$ Simulation of a soccer ball trajectory

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