• Title/Summary/Keyword: Naval Multi-Function Radar

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Fabrication of Analysis Tool for Performance Verification of Naval Multi Function Radar (함정용 다기능레이다 성능검증을 위한 분석도구 제작)

  • Choi, Hong-Jae;Park, Myung-Hoon;Riew, oo-Gon;Kwon, Sewoong;Lee, Ki-Won;Kang, Yeon-Duk;Yo, Seung-Ki
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.20 no.2
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    • pp.123-131
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    • 2020
  • The system performance of naval multi function radar is affected by radar beam operation. Multi f function radar has to operate complicated beam better than search radar and tracking radar which have single operation. This paper describes fabricating analysis tool for the verification method for system performance of naval multi function radar. We composed the model that naval ship with MFR and radar which are detecting targets to verification the system performance. The targets are composed anti-aircraft and anti-ship. We integrate each model and make naval MFR simulator that applied resource management of track beam and search beam. We verify analysis tool by simulation in operating scenario after adjusting system parameter to analysis tool.

A Performance Enhancement of a Naval Multi-Function Radar Signal Processor (GPU를 이용한 함정용 다기능레이다 신호처리기 성능 개선 연구)

  • Kwon, Se-Woong;Hong, Sung-Min;Ryu, Seong-Hyun;Jung, Chae-Hyun;Sohn, Sung-Hwan;Lee, Ki-Won;Kang, Yeon-Duk
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.20 no.2
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    • pp.141-147
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    • 2020
  • We studied for GPU based signal processor for naval multi-function radar. We implemented processing software both DSP and GPU, and compared computation performances and power consumption. As a result, computation performance was enhanced from 1.2 to 4.1 times compared with a DSP result. From the results, GPU can alternating DSP based signal processor for common radar processor even though Naval Multi Function Radar.

A Performance Analysis of Virtualization using Docker for Radar Signal Processing

  • Ji, Jong-Hoon;Moon, Hyun-Wook;Sohn, Sung-Hwan;Hong, Sung-Min;Kwon, Se-Woong;Kang, Yeon-Duk
    • International journal of advanced smart convergence
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    • v.9 no.2
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    • pp.114-122
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    • 2020
  • When replacing hardware due to obsolescence, discontinuation, and expansion of software-equipped electronic equipment, software changes are required in the past, but if virtualization technology is applied, it can be applied without software changes. In this regard, we studied in order to apply virtualization technology in the development of naval multi-function radar signal processing, we studied hardware and OS independency for Docker and performance comparison between Docker and virtual machine. As a result, it was confirmed that hardware and OS independence exist when using Docker and that high-speed processing is possible compared to the virtual machine.

Development of Simulation Tool for Ship Self Defense Scenario Using Naval Multi Function Radar (함정용 다기능 레이다를 이용한 자함 방어 시나리오 시뮬레이션 도구 개발)

  • Park, Myung-Hoon;Kim, Chang-Hwan;Kim, Hyun-Seung;Go, Jin-Yong;Jeon, Woo-Joong;Kwon, Se-Woong;Lee, Ki-Won;Kang, Yeon-Duk;Yoo, Seung-Ki
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.20 no.2
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    • pp.87-96
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    • 2020
  • The multi function radar is searching target and tracking through resource management at the same time. Increasing resource allotment of track, if more targets and faster the renewal rate of track, lead to decreasing quota of searching resource in limited resource. When the resource of search are decreased, it becomes degrade searching performance such as revisit time, number of detecting chance and tracking etc. Degraded performance of search reduces guided missile defense probability in complex strategy such as ship self defense. In this paper, we developed a modeling and simulation (M&S) tool that uses own-ship model, radar model, target model and defense model for analysis of self defense in complex strategy. We analyzed influence of ship self defense in complex strategy according to various target environments and track performance.

Multi Function Console display configuration and HCI design to improve Naval Combat System operability

  • Park, Dae-Young;Jung, Dong-Han;Yang, Moon-Seok
    • Journal of the Korea Society of Computer and Information
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    • v.24 no.12
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    • pp.75-84
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    • 2019
  • The Naval Combat System has several equipment needed to operate the system, such as radar equipment, underwater sensor equipment, guns and missile control and armed control equipment, and a multi function console is configured to control it. The multi function console is equipped with HCI(Human Computer Interaction)-based software for displaying the status information of equipment and controlling equipment, and the operator uses the installed software to operate the Naval Combat System. However, when operating a Naval Combat System for a long time, there are problems such as physical discomfort caused by the structure of the multi function console display and increase in fatigue of the person who operates various and complicated user interface configuration. These issues are important factors in reducing Naval Combat System operability. In order to solve these issues, in this paper, based on a questionnaire survey conducted for Naval Combat System development personnel, multi function console screen design to reduce physical discomfort and HCI design to reduce fatigue and increase intuition are proposed. The proposed design is expected to provide convenience to future Naval Combat System operators and improve operation over existing Naval Combat System.

Development of Sea Clutter Model for Performance Analysis of Naval Multi Function Radar (함정용 다기능 레이다 성능 분석을 위한 해상 클러터 모델 설계)

  • Jeon, Woo-Joong;Kim, Hyun-Seung;Park, Myung-Hoon;Jung, Dong-Min;Kwon, Se-Woong;Jo, Myeong-Hoon;Kang, Yeon-Duk;Yoo, Seung-Ki
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.20 no.2
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    • pp.109-115
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    • 2020
  • As the maritime targets that threaten allies become lower, smaller, and faster, the need for analysis and modeling of clutter according to sea state increases. Clutter according to the sea state has a great influence on radar performance, such as lowering the probability of detection of low-altitude small maritime targets. In this paper, to analyze the detection performance of a multi function radar for a ship, a sea clutter model suitable for the radar operating environment is selected from several sea clutter models, and analysis of low-altitude, small target detection under a clutter is performed. By using the actual data of the already mounted radar for maritime target detection, four known clutter models have been implemented for each sea state and compared with the actual data. Through this, by selecting a clutter model that best reflects the actual radar environment, reliability of the clutter model is improved. Subsequently, the selected model is used to detect the detectable distance to the low-altitude small target.

A Study on the effect of electromagnetic interference in adjacent antenna apertures of multi-function radar for Integrated MAST (통합마스트용 다기능위상배열 레이다의 인접 안테나 개구면 전자파 간섭 영향성 연구)

  • Jung, Chae-Hyun;Ryu, Seong-Hyun;Lee, Hang-Soo;Han, Jae-Sub;Kim, Young-Wan;Kang, Yeon-Duk
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.20 no.2
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    • pp.117-122
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    • 2020
  • In this paper, we study the electromagnetic interference in adjacent antenna aperture of multi-function radar for Integrated MAST of naval ship, which is operating plural radars, with test result of two different X-band antennas. Two antennas is placed in the test fixture copying the part of Integrated MAST for the experiment. The test figure is modeled to see the electromagnetic interference when antenna beam is steered by using electromagnetic analysis tool. Also, 6 test scenarios is determined to verify experimentally and each test scenario is run in an anechoic chamber. At the test antenna #1 radiates a pulse signal and the signal from the antenna #2 is stored and analyzed in the optic data format through a receiving device. Based on the result, the effect of electromagnetic interference is suggested when multi-function radars in the Integrated MAST are operating in adjacent distance.

A Study on Resource Allocations of Multi Function Radar in a Warship (함정의 다기능레이더(MFR) 자원할당 방안에 관한 연구)

  • Park, Young-Man;Lee, Jinho;Cho, Hyunjin;Park, Kyeongju;Kim, Ha-Chul;Lim, Yo-Joon;Kim, Haekeun;Lee, Hochul;Chung, Suk-Moon
    • Journal of the Korea Society for Simulation
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    • v.28 no.1
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    • pp.67-79
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    • 2019
  • A warship equipped with Multi Function Radar(MFR) performs operations by evaluating the degree of threats based on threats' symptom and allocating the resource of MFR to the corresponding threats. This study suggests a simulation-based approach and greedy algorithm in order to effectively allocate the resource of an MFR for warships, and compares these two approaches. As a detection probability function depending on the amount of allocations to each threat, we consider linear and exponential functions. Experimental results show that both the simulation-based approach and greedy algorithm allocate resource similarly to the randomly generated threats, and the greedy algorithm outperforms the simulation-based approach in terms of computational perspective. For a various cases of threats, we analyze the results of MFR resource allocation using the greedy algorithm.

Acceleration of the Multi-Level Fast Multipole Algorithm using Double Interpolation Technique (이중 보간 기법을 이용한 MLFMA 가속기법)

  • Yun, Dal-Jae;Kim, Hyung-Ju;Lee, Jae-In;Yang, Seong-Jun;Yang, Woo-Yong;Bae, Jun-Woo;Myung, Noh-Hoon
    • Journal of the Korea Institute of Military Science and Technology
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    • v.22 no.3
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    • pp.311-319
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    • 2019
  • This paper proposes an acceleration of the multi-level fast multipole algorithm(MLFMA) by using a double interpolation method. The MLFMA has been primarily used to conduct scattering analysis of electrically large targets, e.g. stealth aircraft. In the MLFMA, radiation functions of each basis functions are first precomputed, and then aggregated. After transfer calculations for the aggregations, each interaction is disaggregated, and then received in the testing function. The key idea of the proposed method is to decrease the sampling rates of the radiation and receiving functions. The computational complexity of the unit sphere integration in terms of the testing functions is thus highly alleviated. The remaining insufficient sampling rate is then complemented by using additional interpolation. We demonstrate the performance of the proposed method through radar cross-section(RCS) calculations for realistic aircraft.