• Title/Summary/Keyword: Military Test Equipment

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A Study on The Improvement of Weapon System Test and Evaluation - Focusing on the weapon system in the research development stage - (연구개발무기체계 시험평가 발전방안에 관한 연구)

  • Lee, Kang-Un;Boo, Joon-Hyo
    • Journal of National Security and Military Science
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    • s.8
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    • pp.383-420
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    • 2010
  • This article is focusing on the improvement of weapon system test & evaluation, aimed at the weapon system in the research development stage. This article suggests improvement directions in three aspects(organization and system, skilled manpower and technology, test facilities of weapon system test & evaluation) as follows. 1) Weapon system test & evaluation organization and system a. Establishment of comprehensive test & evaluation system b. Making regulation for comprehensive test infrastructure management. c. Standardization of test & evaluation process, which can be used in special subject to army, navy and air force. 2) Skilled manpower and technology of weapon system test & evaluation a. Training & education, management of test & evaluation experts. b. Establishment of skill management system of test & evaluation. 3) Test facilities of weapon system test & evaluation a. Establishment of comprehensive improvement direction of test & evaluation installation and equipment. b. Consideration of counter measures to prevent overlapping investment, and to use the test & evaluation resources efficiently. c. Establishment of organic network for the effective use of test & evaluation installation and equipment. d. Establishment of detailed cooperation plan for the commonage of test & evaluation facility and equipment.

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Data Processing Method of Radar Processor Unit Test Equipment (레이다처리장치 시험장비의 데이터 처리방안)

  • Lee, Mincheol;Kim, Yong-min
    • Journal of the Korea Institute of Military Science and Technology
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    • v.21 no.6
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    • pp.767-775
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    • 2018
  • To develop and check a Radar Processor Unit, checking the function and performance of the requirement is very important factor in developing Radar. General methods for verifying the Radar is simulation test, environment linkage test and field operation test, firstly, in case of requirement analysis phase, verify Radar algorithm and design by using mathematical method based simulation test method, and secondly, in case of unit test and integrated test phase, Test Equipment is set to simulate radar environment in the lab to verify radar function and performance. Lastly, field operation test phase is carried out to confirm the function and performance after it is mounted on the actual equipment. To successfully develop Radar Processor Unit, using the method of field operation test method after sufficient test cases are tested in radar environmental interlocking method in order to save cost and testing period and because of this reason, development of the Radar Processor Unit Test Equipment is becoming very important factor. In this paper, we introduce the concept of test equipment development and important factors in test equipment, which are target simulation, data processing and device interlocking.

Research of the EMI Test Methods for a Surveillance Radar Subsystem Against the Intermodulation and Undesired Signals (상호 변조 및 불요 신호에 대한 탐색레이더 부 체계의 EMI 시험 기법)

  • Lee, Jin-Ho
    • Journal of the Korea Institute of Military Science and Technology
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    • v.10 no.2
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    • pp.84-89
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    • 2007
  • MIL-STD-461E, EMI military standard for the equipment and subsystems, requires reception characteristic tests to verify the susceptibility of a receiver against the jntermodulation and spurious signals. Because the CS103 and CS104 of MIL-STD-461E show the test configuration of the equipment unit like a traditional receiver, it is possible to verify the susceptibility only for the reception signal through analog filters. However, at present when software programming techniques make a progress, the CS103 and CS104 tests need to evaluate the reception signal of the subsystem which includes both the digital filtering effects and analog filter characteristics. These test and evaluation techniques applied to a surveillance radar subsystem. This paper researched the EMI test methods in order to confirm feasibility of these test and evaluation techniques. Also the test results are compared and analyzed.

The Shock-Test Result and Analysis Using Dual-Pulse Shock Testing Machine (이중충격파형 충격시험장비를 이용한 충격시험 결과 및 분석)

  • Bae, Jongsoo
    • Journal of the Korea Institute of Military Science and Technology
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    • v.21 no.3
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    • pp.342-348
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    • 2018
  • The important issue of equipment installed in maritime weapon system is shock survivability against underwater explosion(UNDEX). If the shock survivability of equipment should not be guaranteed, the successful mission also could not be achieved. For that reason, the shock-resistance of each equipment under UNDEX environment should be demonstrated before deployment at combat field. However, the actual UNDEX test on the ocean is too expensive to conduct. Also, it has diverse dangerous factors. The main characteristic of UNDEX is a dual-pulse shock. The vertical shock test machine able to simulate dual pulse shock signal on the ground will be introduced in this paper. The dual-pulse shock signal presented in certain shock standard was achieved with this shock-test machine on the ground. The analytical procedure to set a test condition was verified by comparing simulation result with experiment result.

Multi-body Dynamics and Structural Vibration Analyses of Smart UAV Ground Test Equipment (스마트 무인기 지상시험장치의 다물체 동역학 및 구조진동해석)

  • Park, Kang-Kyun;Kim, Dong-Hyun;Kim, Dong-Man;Choi, Hyun-Chul;Ahn, Oh-Sung
    • Journal of the Korea Institute of Military Science and Technology
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    • v.13 no.1
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    • pp.22-29
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    • 2010
  • In this study, computational multi-body dynamics and structural vibration analyses including some impact condition have been conducted for the ground flight test system of the developed smart UAV model. Designed ground test system has four degree-of-freedom motions with limited motion control mechanism. Design safety margin designs for several structural components are tested and verified considering expected critical motions (pitching and rolling) of the test smart UAV model. Computational results for various analysis conditions are practically presented in detail. Futhermore, proper design modifications of the initially designed test equipment in order to guarantee or increase structural safety have been successfully conducted in the design stage.

A Study on Design and Implementation of a Test System for Underwater Communication Equipment (수중 통신 장비를 위한 검사기 설계와 구현에 관한 연구)

  • Yun, Hyeontae;Seok, Jongwon
    • Journal of the Korea Institute of Military Science and Technology
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    • v.22 no.1
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    • pp.42-48
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    • 2019
  • Since the underwater telephone was sold in a short time, there are few repair equipments. And equipment is difficult to locate fault. Equipment with transducers must be inspected underwater, and a relative naval vessels is required to perform an operational check. So we developed a tester device to test the transmission card through the spectrum and transmission power, and to develop a device that can conduct operational tests on land. Therefore, the development of the tester reduces the incidence of naval vessels and contributes to the development of domestic underwater communication test equipment.

Vibration Response Analysis of the Military Vehicle by Road Test (군용차량 주행 진동응답 분석)

  • Shin, Dong-Jun;Lee, Jong-Hak;Kang, Young-Sik;Choi, Ji-Ho;Kang, Dong-Seok
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2014.10a
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    • pp.262-266
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    • 2014
  • Military vehicle equipped with an antenna and a shelter for operating radar has a vibration exposure during driving time. This vibration would have influence on structure of military vehicle critically. In this paper, driving stability of the military vehicle is obtained through the vibration response analysis. And, vibration level of the military vehicle satisfied the military vibration specification through analysis and comparing the MIL-STD-810G. PSD and Grms data obtained by road test can be used for vibration test specification of cabinets and electronic equipment in shelter.

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A Study on the Design and Verification-Validation of the Supportive Equipment for Shipyard Test of Naval Combat System (함정 전투체계 함상시험을 위한 지원장비 설계 및 검증 연구)

  • Jung, Youngran;Kim, Cheolho;Han, Woonggie;Kim, Jaeick;Kim, Hyunsil
    • Journal of the Korea Institute of Military Science and Technology
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    • v.17 no.3
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    • pp.318-326
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    • 2014
  • The Shipyard Test of Naval Combat System depends on external factors, such as weather conditions and availability of its sensor-weapon, due to the need of on-board sensor-weapon during the test. This paper suggests the Supportive Equipment using virtual simulator for Shipward Test, in case of the unavailability of the on-board sensor-weapon or the test support force(aircraft, surface ship etc.), to pre-check the functions of the combat system as well as to prepare the Shipyard Test. To mock the real sensor-weapon functions as similar as possible, the Supportive Equipment for Shipyard Test was verified by the Verification and Validation process, which is usually performed while developing models in the Modeling & Simulation field.

Design and Verification of Mission Equipment Package System for Korean Utility Helicopter (한국형 기동헬기 임무탑재장비체계 설계 및 입증)

  • Kim, Sung-Woo;Lee, Byoung-Hwa;Yu, Yeon-Woon;Lee, Jong-Hoon;Yim, Jong-Bong
    • Journal of the Korea Institute of Military Science and Technology
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    • v.14 no.3
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    • pp.388-396
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    • 2011
  • Mission Equipment Package(MEP) system is a collection of avionic components that are integrated to perform the mission of the Korean Utility Helicopter(KUH). MEP system development is classified mission-critical embedded system but KUH MEP system developed including flight-critical data implementation. It is important to establish the good development and verification process for the successful system development. This paper describe the development and verification process in each phase for the KUH MEP system. MEP system design is verified through the qualification test, system failure test and compatibility test in System Integration Laboratory(SIL).

Test & Evaluation of Airborne Communication, Navigation, Identification Equipment (항공 통신, 항법, 식별장비 시험평가)

  • Kim, Sung Woo;Kim, Min Su;Lee, Young Sik;Lee, Byoung Hwa;Oh, Woo Seop
    • Journal of the Korea Institute of Military Science and Technology
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    • v.15 no.5
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    • pp.615-622
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    • 2012
  • Airborne radio communications, navigation, and identification equipments are the basic equipment of airplane. Airborne radio communications, navigation, and identification equipments are characterized by user's many quantitative and qualitative requirements. These equipment look like simple test and evaluation, but they have many complex factors. This paper describe the test and evaluation of airborne radio communications, navigation, and identification equipments.