• 제목/요약/키워드: Autonomous Flight

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도심항공교통시스템 운용 개념 분석에 따른 운항경로 구축 연구 (Flight Routes Establishment Through the Operational Concept Analysis of Urban Air Mobility System)

  • 이영재;곽태호;정구문;안재현;정봉철;이재우
    • 한국항공우주학회지
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    • 제48권12호
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    • pp.1021-1031
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    • 2020
  • 인공지능, 자율항법 등 4차 산업의 기술들이 발전하면서 도심항공교통(UAM)이 도심의 교통 체증에 대한 효과적인 대안으로 고려되고 있으며, 한국을 비롯한 세계의 많은 기업들이 비행체 개발과 운용 체계 연구를 수행하고 있다. 본 연구에서는 도심항공교통의 운용에 필요한 요소들을 식별, 분류한 뒤 운용 체계 개념을 수립하였으며, 각 요소별로 세부적 고려사항들을 분석하였다. 운용 체계 개념 분석 결과를 기반으로 서울시와 경인권을 연결하는 도심항공교통 운항경로를 구축하였으며, 비행체의 성능 분석을 통하여 구축된 운항경로가 운용이 가능함을 확인하였다. 본 경로 분석연구는 추후 국내 여러 도시의 도심항공교통 운항경로 수립에 적용이 가능할 것으로 예측된다.

무인 항공기의 이동체 상부로의 영상 기반 자동 착륙 시스템 (Vision-based Autonomous Landing System of an Unmanned Aerial Vehicle on a Moving Vehicle)

  • 정성욱;구정모;정광익;김형진;명현
    • 로봇학회논문지
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    • 제11권4호
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    • pp.262-269
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    • 2016
  • Flight of an autonomous unmanned aerial vehicle (UAV) generally consists of four steps; take-off, ascent, descent, and finally landing. Among them, autonomous landing is a challenging task due to high risks and reliability problem. In case the landing site where the UAV is supposed to land is moving or oscillating, the situation becomes more unpredictable and it is far more difficult than landing on a stationary site. For these reasons, the accurate and precise control is required for an autonomous landing system of a UAV on top of a moving vehicle which is rolling or oscillating while moving. In this paper, a vision-only based landing algorithm using dynamic gimbal control is proposed. The conventional camera systems which are applied to the previous studies are fixed as downward facing or forward facing. The main disadvantage of these system is a narrow field of view (FOV). By controlling the gimbal to track the target dynamically, this problem can be ameliorated. Furthermore, the system helps the UAV follow the target faster than using only a fixed camera. With the artificial tag on a landing pad, the relative position and orientation of the UAV are acquired, and those estimated poses are used for gimbal control and UAV control for safe and stable landing on a moving vehicle. The outdoor experimental results show that this vision-based algorithm performs fairly well and can be applied to real situations.

무인 이동 로봇 위치추정을 위한 초음파 위성 시스템 (USAT(Ultrasonic Satellite System) for the Autonomous Mobile Robots Localization)

  • 이동활;김수용;윤강섭;이만형
    • 제어로봇시스템학회논문지
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    • 제13권10호
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    • pp.956-961
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    • 2007
  • We propose a new distance measurement method and local positioning system for the autonomous mobile robots localization. The distance measurement method is able to measure long-range distances with a high accuracy by using ultrasonic sensors. The time of flight of the ultrasonic waves include various noises is calculated accurately by the proposed period detecting method. The proposed local positioning system is composed of four ultrasonic transmitters and one ultrasonic receiver. The ultrasonic transmitter and receiver are separated but they are synchronized by RF (Radio frequency) signal. The proposed system using ultrasonic waves is represented as USAT(Ultrasonic Satellite System). USAT is able to estimate the position using the least square estimation. The experimental results show that the proposed local positioning system enables to estimate the absolute position precisely.

쿼드콥터의 곡률 기반 3차원 경로 계획 알고리즘 (Curvature-based 3D Path Planning Algorithm for Quadcopter)

  • 박재용;김보성;이승욱;마울라나 비시르 아즈하리;심현철
    • 로봇학회논문지
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    • 제18권3호
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    • pp.316-322
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    • 2023
  • The increasing popularity of autonomous unmanned aerial vehicles (UAVs) can be attributed to their wide range of applications. 3D path planning is one of the crucial components enabling autonomous flight. In this paper, we present a novel 3D path planning algorithm that generates and utilizes curvature-based trajectories. Our approach leverages circular properties, offering notable advantages. First, circular trajectories make collision detection easier. Second, the planning procedure is streamlined by eliminating the need for the spline process to generate dynamically feasible trajectories. To validate our proposed algorithm, we conducted simulations in Gazebo Simulator. Within the simulation, we placed various obstacles such as pillars, nets, trees, and walls. The results demonstrate the efficacy and potential of our proposed algorithm in facilitating efficient and reliable 3D path planning for UAVs.

분산영상 매칭을 이용한 소형 쿼드콥터의 실내 비행 위치인식과 자율비행 (Position Recognition and Indoor Autonomous Flight of a Small Quadcopter Using Distributed Image Matching)

  • 진태석
    • 한국산업융합학회 논문집
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    • 제23권2_2호
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    • pp.255-261
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    • 2020
  • We consider the problem of autonomously flying a quadcopter in indoor environments. Navigation in indoor settings poses two major issues. First, real time recognition of the marker captured by the camera. Second, The combination of the distributed images is used to determine the position and orientation of the quadcopter in an indoor environment. We autonomously fly a miniature RC quadcopter in small known environments using an on-board camera as the only sensor. We use an algorithm that combines data-driven image classification with image-combine techniques on the images captured by the camera to achieve real 3D localization and navigation.

감시용 동축로터 비행로봇의 개발 (Development of a Coaxial Rotor Flying Robot for Observation)

  • 강민성;신진옥;박상덕;황세희;조국;김덕후;지상기
    • 제어로봇시스템학회논문지
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    • 제13권2호
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    • pp.101-107
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    • 2007
  • A coaxial rotor flying robot is developed for surveying and reconnoitering various circumstances under calamity environment. The robot has two contrarotating rotors on a common axis, an embedded microcontroller, an IMU(Inertial Measurement Unit), an IR sensor for height control, a micro camera for surveillance, ultrasonic position sensors and wireless communication devices. A bell-bar mounted on the top of the upper rotor hub increases stability and improves flight performance. In this paper, we present a dynamic model of a coaxial rotor flying robot and design an embedded controller far the robot, and implement them to control the developed flying robot. Experimental results show that the proposed controller is valid for autonomous hovering and position control.

A Study of Unmanned Aerial Vehicle Path Planning using Reinforcement Learning

  • Kim, Cheong Ghil
    • 반도체디스플레이기술학회지
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    • 제17권1호
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    • pp.88-92
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    • 2018
  • Currently drone industry has become one of the fast growing markets and the technology for unmanned aerial vehicles are expected to continue to develop at a rapid rate. Especially small unmanned aerial vehicle systems have been designed and utilized for the various field with their own specific purposes. In these fields the path planning problem to find the shortest path between two oriented points is important. In this paper we introduce a path planning strategy for an autonomous flight of unmanned aerial vehicles through reinforcement learning with self-positioning technique. We perform Q-learning algorithm, a kind of reinforcement learning algorithm. At the same time, multi sensors of acceleraion sensor, gyro sensor, and magnetic are used to estimate the position. For the functional evaluation, the proposed method was simulated with virtual UAV environment and visualized the results. The flight history was based on a PX4 based drones system equipped with a smartphone.

자동 비행 소형 무인 회전익항공기의 영상정보를 이용한 지상 이동물체 추적 연구 (Tracking of ground objects using image information for autonomous rotary unmanned aerial vehicles)

  • 강태화;백광열;목성훈;이원석;이동진;임승한;방효충
    • 한국항공우주학회지
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    • 제38권5호
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    • pp.490-498
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    • 2010
  • 본 논문에서는 소형 무인항공기에 영상 획득용 카메라를 장착하여 지상의 이동물체를 자동으로 추적하고 지상으로 영상정보를 지속적으로 전송하는 기술 및 관련 이론에 대한 연구를 다루고 있다. 본 연구에 사용된 회전익 무인항공기에는 소형 고성능의 영상획득 장치와 지상표적에 대한 식별 지향 자동추적 알고리즘이 탑재되었고 더욱 안정된 영상추적을 위해 영상 안정화 기법을 추가적으로 적용하였다. 최종적으로 모든 연구내용에 대해 비행시험을 수행하여 그 성능을 검증하였다.

Autonomous Control System of Compact Model-helicopter

  • Kang, Chul-Ung;Jun Satake;Takakazu Ishimatsu;Yoichi Shimomoto;Jun Hashimoto
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 1998년도 제13차 학술회의논문집
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    • pp.95-99
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    • 1998
  • We introduce an autonomous flying system using a model-helicopter. A feature of the helicopter is that autonomous flight is realized on the low-cost compact model-helicopter. Our helicopter system is divided into two parts. One is on the helicopter, and the other is on the land. The helicopter is loaded with a vision sensor and an electronic compass including a tilt sensor. The control system on the land monitors the helicopter movement and controls. We firstly introduce the configuration of our helicopter system with a vision sensor and an electronic compass. To determine the 3-D position and posture of helicopter, a technique of image recognition using a monocular image is described based on the idea of the sensor fusion of vision and electronic compass. Finally, we show an experiment result, which we obtained in the hovering. The result shows the effectiveness of our system in the compact model-helicopter.

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무인항공기용 항법센서 통합 비행제어 시스템 설계 (UAV Navigation Sensor Integrated Flight Control System Design)

  • 이동혁;정태원;이기성
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1928-1929
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    • 2011
  • 무인항공기란(Unmanned Aerial Vehicle : UAV)란 일반적으로 조종사 없이 사전에 입력된 프로그램에 따라 또는 비행체 스스로 주위환경(장애물, 항로)을 인식하고 판단하여 자율 비행(Autonomous Flying)하는 비행체를 말한다. 본 논문에서는 항법센서(Attitude Heading Referance System: AHRS)를 비행제어 시스템과 통합한 시스템에 관하여 다루었다.

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