• 제목/요약/키워드: Suppression of Enemy Air Defenses

검색결과 4건 처리시간 0.017초

SEAD 임무를 위한 유·무인 협업 모의 (Simulation for SEAD Mission with MUM-T)

  • 조성범;최영미;오지현;명현삼;임흥식
    • 한국군사과학기술학회지
    • /
    • 제26권5호
    • /
    • pp.409-421
    • /
    • 2023
  • In the air power, UAVs have played a large and diversified role in performing missions from simple to high-level complex ones. In particular, the suppression of enemy air defenses(SEAD) is very dangerous for a pilot so it is expected that the manned-unmanned teaming(MUM-T) system with tailless stealthy unmanned aerial vehicle(UAV) will greatly enhance effectiveness of the mission while ensuring the pilot safe. This paper describes simulation studies of remote airborne control(RAC) environment for performing the SEAD mission by MUM-T, by which the air force pilot remotely controls tailless UAVs individually or small UAVs in swarm. Through this simulation, air force pilot can derive the concept of MUM-T mission operation with various UAVs in the future, and it can be used to upgrade the MUM-T system by verifying the effectiveness of the mission.

혼합정수계획법을 이용한 항공기-목표물 최적할당에 관한 연구 (The Optimal Allocation of Aircrafts to Targets by Using Mixed Integer Programming)

  • 이대력;양재환
    • 경영과학
    • /
    • 제25권1호
    • /
    • pp.55-74
    • /
    • 2008
  • In recent warfare, the performance improvement of air weapon systems enables an aircraft to strike multiple targets on a single sortie. Further, aircrafts attacking targets may carry out an operation as a strike package that is composed of bombers, escort aircrafts, SEAD (Suppression of Enemy Air Defenses) aircrafts and etc. In this paper, we present an aircraft allocation model that allocates multiple targets to a single sortie in the form of a strike package. A mixed integer programming is developed and solved by using a commercially available software. The new model is better than existing ones because not only it allocates aircrafts to multiple targets but also it models the concept of the strike package. We perform a computational experiment to compare the result of the new model with that of existing ones, and perform sensitivity analysis by varying a couple of important parameters.

ROS와 픽스호크를 활용한 이기종 무인 이동체간 통합 시뮬레이션 환경 구축 (Integrated Simulation Environment for Heterogeneous Unmanned Vehicle using ROS and Pixhawk)

  • 김형민;이대우
    • 한국항공운항학회지
    • /
    • 제27권3호
    • /
    • pp.1-14
    • /
    • 2019
  • Cooperative systems among various unmanned vehicles are widely used in various field and emerging. Unmanned vehicles are able to operate various missions without operator onboard and they are highly stable. Collaborative work of multiple unmanned vehicles is emphasized due to the difficulty of recent missions such as SEAD (Suppression of the Enemy Air Defenses), MUSIC (Manned Unmanned Systems Integration Capability), goldentime in the rescue mission. In this study, ROS and Pixhawk were proposed as a method of construction of a collaboration system and framework for an integrated simulation environment for heterogeneous unmanned vehicles is proposed. Totally 5 unmanned vehicles were set for the simulation for the observation of illegal fishing boats. This paper shows the feasibility of the cooperative system using ROS and Pixhawk through the simulation and the experiment.

무인기의 SEAD 임무 수행을 위한 임무 경로 생성 및 효과도 산출 기법 연구 (A Study on the Techniques of Path Planning and Measure of Effectiveness for the SEAD Mission of an UAV)

  • 우지원;박상윤;남경래;고정환;김재경
    • 한국항행학회논문지
    • /
    • 제26권5호
    • /
    • pp.304-311
    • /
    • 2022
  • 적 방공망 제압 임무는 현대전에서 전략적으로 중요한 임무이지만 적 방공자산에 직접적으로 노출될 위험이 높아 위험 부담이 크다. 따라서, 무인기를 활용하여 임무를 수행하는 것이 하나의 대안으로 제시된다. 본 논문에서는 무인기의 적 방공망 제압 임무 수행을 위한 경로 생성 기법과 생성된 경로에 대한 임무 효과도 산출 기법을 제안한다. 먼저, RRT 기반의 경로 탐색 알고리즘을 기반으로 적의 단거리 대공 위협을 고려할 수 있는 저공 침투/이탈 비행 경로 기법을 다룬다. 또한, 최단의 경로이면서 동시에 적의 단거리 대공 위협을 최대한 회피하는 표적 타격 경로를 생성하기 위해 Dubins 경로 기반의 타격 경로 생성 기법이 사용된다. 이를 통해 생성된 침투/타격/이탈 경로를 순서에 따라 통합한다. 통합된 경로를 기반으로 연료소모량, 무인기의 생존 확률, 임무 수행 소요 시간, 그리고 표적 파괴 확률로 이루어진 임무 효과도를 산출한다. 마지막으로, 제안된 적 방공망 제압 임무 경로 생성 기법 및 임무 효과도 산출 기법을 가상 시나리오를 통해 검증한다.