• Title/Summary/Keyword: 위성군

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Site Selection Method of Receiving Stations for the GNSS Based Transportation Infrastructure Network Analyzing the Environment of Site Candidates (현장 분석을 통한 위성항법기반 교통인프라 네트워크 수신국 사이트 선정 방법)

  • Son, Min-Hyuk;Kim, Geo-Heon;Lee, Eun-Sung;Heo, Moon-Beom
    • Journal of Advanced Navigation Technology
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    • v.16 no.6
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    • pp.935-943
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    • 2012
  • In this paper a three step procedure was derived to select the GNSS network receiving site candidates for GNSS based infrastructure technology development and according to the proposed procedure the 4 site candidates was selected for final network configuration. In the first step, the site requirement was produced for GNSS based infrastructure technology development referring regulation of the international organizations related to permanent GNSS data receiving and the first candidates were selected using the proposed requirement. In the second step, the second candidates were selected among the first candidates by analyzing the visual measurement, environment test and so on. In the third step the final candidates were selected among the second candidates by analyzing sky clearance, radio frequency interference. Through above the three step procedure 16,7,4 candidates of site were selected sequentially and receiving station site could be effectively selected.

A simulator for delay-time and bit error generation on geostationary satellite communication link (정지궤도 위성채널 지연과 비트에러 발생 시뮬레이터)

  • Park, Gyeong-Yeol
    • Journal of Satellite, Information and Communications
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    • v.1 no.1
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    • pp.20-25
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    • 2006
  • The link of Geostationary Communication Satellite has transit delay and noise environments by physical distance. This situation exerts an influence on the degradation of baseband performance of Earth Station. Therefore, it is very important that degradation of baseband performance is grasped previously. This paper is presented that developed the simulator which can evaluate the baseband performance of earth station of a military satellite communication system during the current development. The simulator can mock delay on a satellite channel and bit errors without being used actual satellite links.

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Analysis on Triaxial Velocity induced by Wheel Off-loading of Geostationary Satellite (정지궤도위성의 휠모멘텀 제어에 의해 발생되는 3축 궤도병진 속도에 관한 분석)

  • Park, Young-Woong;Park, Keun-Joo;Kim, Dae-Kwan;Yang, Koon-Ho
    • Aerospace Engineering and Technology
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    • v.7 no.2
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    • pp.88-94
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    • 2008
  • In this study, triaxial velocity is analyzed for COMS(Communication, Ocean and Meteorological Satellite) configuration, which is generated when thrusters are used to dump wheel momentum. Since COMS is designed to periodically change the thruster set in order to uniformly decrease the performance of thrusters, triaxial velocity would be different during the change of thruster set. So, the triaxial velocity generated due to the change of thruster set is optimized.

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Satellite Rainfall Correction using Ground Rainfall Data (지점강우를 활용한 위성보정강우)

  • Kim, Joo Hun;Choi, Yun Seok;Kim, Kyeong Tak
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.441-441
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    • 2015
  • 북한의 수자원 현황을 분석하고 미래를 전망하는 일은 수자원 분야 전문가들의 공통된 관심사 중 하나이다. 그러나 많은 노력에도 불구하고 제한된 자료로 인해 이에 대한 체계적인 성과가 구축되지 못한 것이 사실이다(안재현 등, 2010). 북한 수자원 현황과 관련해서 1994년 한국수자원공사의"북한 수자원 현황 및 개발 동향"에 대한 연구와 1996년 한국과학기술단체총연합회의"남북한 수자원 비교평가 연구"가 수행된 바 있다. 본 연구에서는 2012년 7월 북한의 홍수피해에 대하여 북한지역의 빈약한 강우량 정보를 활용하여 위성으로부터 유도된 강우자료를 보정하여 북한지역의 홍수량을 산정하는데 활용할 수 있는 시계열 자료를 생성하는 것을 목적으로 하였다. 2012년 북한 홍수피해는 조선 중앙통신 보도에 의하면 6월 말부터 7월말까지 169명 사망, 400여명 실중, 144명 상해의 인명피해와 평안남북도, 자강도, 함경남북도 등 4만 3770여 가구가 침수되었으며, 농경지 피해는 6만 5280정보가 유실, 매몰, 침수(평안북도 2만 3400정보, 평안남도 2만 1900정보, 함경남도 5679정보, 함경북도 7220정보)의 피해를 입은 것으로 보도하고 있다(http://www.hani.co.kr/arti/politics/defense/545795.html). 한편, 북한의 기상수문국 통보에 의하면 2012년 장마가 시작된 이후 20일 동인 평균 강우량의 2배 가까운 비가 내렸으며, 특히 7월 19일 오후 9시부터 21일 오후 3시 사이 자강도 동신군에 413mm, 송원군에 383mm, 희천시에 322mm, 평안북도 태천군에 380mm, 향산군에 312mm, 동창군에 304mm의 폭우가 쏟아졌다고 조선중앙통신은 덧붙였다. 본 연구에서는 위성으로부터 유도된 강수자료 중 GSMaP_NRT자료를 활용하여 북한의 기상수문국에서 통보한 같이 기간의 강수량 자료를 분석한 결과 자강도 동신군 지역의 경우 총강우는 208.8mm로 분석되었으며, 평균강우는 9.49mm, 최대강우강도는 17.7mm/hr로 분석되었다. 두 자료의 총강우량에 대한 상대오차는 약 49.5% 정도의 오차가 있는 것으로 분석되었다. 위성강우 보정 방법으로 Immerzeel(2001) 등은 위성으로 관측된 시계열 자료와 지상계측된 시계열 자료를 분석하여 두 자료간의 평균과 표준편차를 이용하여 평균 및 표준편차 계수를 산정하여 위성자료에 대한 보정강우를 생성하는 방법을 제시한 바 있다. 본 연구에서는 위성으로부터 유도된 강우량 자료는 시계열 자료이나 지점계측 강우는 총강우만 존재하여 총강우에 대한 시계열 자료를 위성강수자료를 무차원화하여 지점계측의 위성 보정강우를 생성하였다.

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Performance Analysis of Cooperative Communication with Spread Spectrum to Overcome Channel Blockage for On-The-Move Terminal in Next Generation Satellite Communication Systems (차기 군 위성통신체계 환경에서 이동형 위성단말의 채널 blockage 극복을 위한 확산기반 협업통신 기법의 성능 분석)

  • Park, Hyung-Won;Lee, Ho-Sub;Yoon, Won-Sik
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.39C no.9
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    • pp.757-766
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    • 2014
  • To compensate signal loss due to the channel blockage in satellite communication link, we propose a cooperative communication scheme for OTM(On-The-Move) terminal in next generation satellite communication systems. The proposed scheme configures cooperation subnet with adjacent OTM terminal with the help of ground communication equipment. Shared data is spread by orthogonal spreading code, then the spread sequences are transmitted simultaneously. The receiver combines the power of received signals by EGC(Equal gain combining). The OTM terminal blockage channel is modeled by 2-state Markov chain. We evaluate the bit error rate according to the blockage channel of the channel state for the performance analysis of the proposed scheme. As a result, the proposed scheme shows better BER performance than traditional scheme with the help of subset members. In particular, the proposed scheme shows superior performance as the channel block probability is higher. However, as the number of subset members is increasing, there is a constraint because of the higher multiple access interference.

Research for Space Activities of Korea Air Force - Political and Legal Perspective (우리나라 공군의 우주력 건설을 위한 정책적.법적고찰)

  • Shin, Sung-Hwan
    • The Korean Journal of Air & Space Law and Policy
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    • v.18
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    • pp.135-183
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    • 2003
  • Aerospace force is a determining factor in a modem war. The combat field is expanding to space. Thus, the legitimacy of establishing aerospace force is no longer an debating issue, but "how should we establish aerospace force" has become an issue to the military. The standard limiting on the military use of space should be non-aggressive use as asserted by the U.S., rather than non-military use as asserted by the former Soviet Union. The former Soviet Union's argument is not even strongly supported by the current Russia government, and realistically is hard to be applied. Thus, the multi-purpose satellite used for military surveillance or a commercial satellite employed for military communication are allowed under the U.S. principle of peaceful use of space. In this regard, Air Force may be free to develop a military surveillance satellite and a communication satellite with civilian research institute. Although MTCR, entered into with the U.S., restricts the development of space-launching vehicle for the export purpose, the development of space-launching vehicle by the Korea Air Force or Korea Aerospace Research Institute is beyond the scope of application of MTCR, and Air Force may just operate a satellite in the orbit for the military purpose. The primary task for multi-purpose satellite is a remote sensing; SAR sensor with high resolution is mainly employed for military use. Therefore, a system that enables Air Force, the Korea Aerospace Research Institute, and Agency for Defense Development to conduct joint-research and development should be instituted. U.S. Air Force has dismantled its own space-launching vehicle step by step, and, instead, has increased using private space launching vehicle. In addition, Military communication has been operated separately from civil communication services or broadcasting services due to the special circumstances unique to the military setting. However, joint-operation of communication facility by the military and civil users is preferred because this reduces financial burden resulting from separate operation of military satellite. During the Gulf War, U.S. armed forces employed commercial satellites for its military communication. Korea's participation in space technology research is a little bit behind in time, considering its economic scale. In terms of budget, Korea is to spend 5 trillion won for 15 years for the space activities. However, Japan has 2 trillion won annul budget for the same activities. Because the development of space industry during initial fostering period does not apply to profit-making business, government supports are inevitable. All space development programs of other foreign countries are entirely supported by each government, and, only recently, private industry started participating in limited area such as a communication satellite and broadcasting satellite, Particularly, Korea's space industry is in an infant stage, which largely demands government supports. Government support should be in the form of investment or financial contribution, rather than in the form of loan or borrowing. Compared to other advanced countries in space industry, Korea needs more budget and professional research staff. Naturally, for the efficient and systemic space development and for the prevention of overlapping and distraction of power, it is necessary to enact space-related statutes, which would provide dear vision for the Korea space development. Furthermore, the fact that a variety of departments are running their own space development program requires a centralized and single space-industry development system. Prior to discussing how to coordinate or integrate space programs between Agency for Defense Development and the Korea Aerospace Research Institute, it is a prerequisite to establish, namely, "Space Operations Center"in the Air Force, which would determine policy and strategy in operating space forces. For the establishment of "Space Operations Center," policy determinations by the Ministry of National Defense and the Joint Chief of Staff are required. Especially, space surveillance system through using a military surveillance satellite and communication satellite, which would lay foundation for independent defense, shall be established with reference to Japan's space force plan. In order to resolve issues related to MTCR, Air Force would use space-launching vehicle of the Korea Aerospace Research Institute. Moreover, defense budge should be appropriated for using multi-purpose satellite and communication satellite. The Ministry of National Defense needs to appropriate 2.5 trillion won budget for space operations, which amounts to Japan's surveillance satellite operating budges.

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Matching algorithm for self-propellent artillery position on satellite image Using chamfer distance (챔퍼 디스턴스를 이용한 위성영상 상의 북한군 자주포진지 매칭기법)

  • Kim, Sanghun;Lee, Soon-Young;Yun, Ildong;Lee, Sanguk
    • Proceedings of the Korean Society of Broadcast Engineers Conference
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    • 2011.07a
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    • pp.451-453
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    • 2011
  • 본 논문에서는 챔퍼 디스턴스 매칭(chamfer distance matching)를 이용하여 위성 영상 상의 북한군 자주포진지(self-propellent artillery position)를 매칭하는 기법을 제안한다. 먼저 입력되는 위성 영상을 잡음환경에 강인한 가우시안-라플라시안 연산자를 이용하여 에지(edge)를 추출한다. 추출된 에지 영상의 각 픽셀에 대해 가장 가까운 에지까지의 거리를 나타내는 거리 변환(distance transform) 영상을 생성한다. 템플릿 영상은 다양한 자주포진지 영상에서 샘플링된 영상으로 에지를 추출한 후 거리 변환을 거친다. 마지막으로 템플릿 영상을 입력된 거리 변환 영상에 윈도우 슬라이딩(window sliding)하여 최소값의 가지는 위치를 구한다. 제안 기법은 잡음에 강인한 가우시안-라플라시안 연산자를 사용하여 기상조건에 의한 입력 영상의 편차에도 효율적인 매칭이 가능하다. 또한 에지 기반의 챔퍼 매칭을 이용하기 때문에 비 균일 조명 환경에서도 강인한 매칭이 이루어진다. 전산 모의 실험에서 제안 알고리즘은 입력 위성 영상 상의 자주포진지를 적은 계산량으도 신뢰있게 매칭함을 보여준다.

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An Analysis of Satellite Communications System structure for NCW (NCW대비 군 위성통신 구조 분석)

  • Park, Woo-Chul;Cha, Jae-Ryong;Kim, Jae-Hyun
    • Journal of Satellite, Information and Communications
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    • v.4 no.1
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    • pp.1-7
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    • 2009
  • As the information age comes out, the aspect of future war brings about the many changes in terms of war-fighting environment. Accordingly, information superiority and intelligence-centric warfare have been important and new war-fighting concept such as NCW(network centric warfare) have been turned up. This paper proposed all-weather core-strategy communications systems guaranteeing not only the real-time transmission of the information collected in a battlefield and expansion, automation, and rapidity of a battlefield but also broadband, mobility, survivability, and flexibility. The proposed military satellite communications system is classified into wideband mass capacity link, survivability, and the system supporting OTM(on the move) communication for the real-time transmission of battlefield information. This paper analyzed the essential operation concepts and core schemes of the U.S. Army's next generation system, TSAT(Transformational Satellite Communication System). Base on the analysis results, this paper proposed that the architecture of next generation military satellite communications systems for NCW have to provide the data rate, anti-jamming capability, network control and management capability which are optimally adaptable for the wireless channel environments such as jamming and interference and to support the variety of platforms like high-speed mobile vehicles, micromini devices, super-high speed unmanned aerial vehicles. Finally, this paper also proposed that next generation military satellite communications systems need the technologies such as the adaptable multi-antenna, laser link, and next-generation anti-jamming waveform.

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Visibility Analysis of Iridium Communication for SNIPE Nano-Satellite (SNIPE 초소형위성용 Iridium 통신 모듈의 가시성 분석)

  • Cho, Dong-Hyun;Kim, Hongrae;Kim, Hae-Dong
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.50 no.2
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    • pp.127-135
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    • 2022
  • Compared to the continuous increase of domestic nano-satellite development cases, the initial communication success rate is relatively low. In a situation where communication cases of LEO satellites using commercial satellite communication networks are increasing recently. In this situation, the SNIPE project developed by the KASI(Korea Astronomy and Space Science Institute), KARI(Korea Aerospace Research Institute), and Yonsei University apply an Iridium module for communication test to the SNIPE nano-satellites. Therefore, in this paper, the visibility analysis of the iridium module on the SNIPE satellite was analyzed under considering the orbital and communication environment of the iridium satellite constellation and the attitude control mode. In the case of LEO satellites, the communication possibility was limited due to the relatively small iridium communication coverage for high altitude and the high doppler shift considered in the iridium communication network. For this reason, in this paper, it could be simulated that there was a more performance difference according to the difference in relative RAAN(Right Ascension of Ascending Node) angle with the Iridium constellation. Finally, by checking the visibility of communication module under the tumbling situation that occurred during the initial deployment of the nano-satellite, the possibility of using the iridium communication technology was analyzed.