• 제목/요약/키워드: deployment cost

검색결과 272건 처리시간 0.035초

함정의 대탄도탄전 효과도 분석을 위한 모델링 및 시뮬레이션 (Modeling and Simulation for Effectiveness Analysis of Anti-Ballistic Warfare in Naval Vessels)

  • 배장원;이근호;나형호;문일철
    • 한국시뮬레이션학회논문지
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    • 제32권3호
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    • pp.55-66
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    • 2023
  • 최근 해군 함정은 다양한 최첨단 장비와 ICT 기술이 탑재되어 다종의 임무를 수행할 수 있도록 개발되고 있다. 우리나라 해군 함정의 주요 임무 중 하나는 급증하고 있는 탄도탄의 위협으로부터 아군의 주요 유닛과 지역을 방어하는 대탄도탄전이다. 대탄도탄전의 경우 탐지에서 요격까지 이루어지는 과정이 복잡한 반면 실패에 대한 피해가 크기 때문에, 대탄도탄전을 효과적으로 수행하기 위한 많은 준비가 필요하다. 본 논문에서는 미래 해군 함정에 탑재될 전투체계 및 장비를 활용한 대탄도 탄전 시뮬레이션 모델을 제안한다. 특히, 대탄도탄전에 필요한 특성을 반영하여 향후 효과도 분석에 활용될 수 있는 시뮬레이션 모델을 제안하고자 한다. 이를 위하여, 시뮬레이션 모델 개발에 DEVS 형식론을 적용하여 모듈러하고 계층적인 모델을 개발하였으며, 다양한 대탄도탄전 상황을 효율적으로 표현할 수 있게 하였다. 제시된 사례 연구 결과에서는 함정의 탐지 체계의 성능 및 의사 결정으로 발생할 수 있는 대탄도탄전의 문제 상황을 시뮬레이션 내용과 그 의미를 설명하였다. 향후 본 연구의 결과가 함정의 대탄도탄전 효과도 분석은 물론 함정의 대탄도탄전의 효과적인 수행을 위한 최적의 전투자원 배치 및 제원 그리고 운용 전술 등을 개발하는데 활용되기를 기대한다.

모델기반 통합 개발 플랫폼을 이용한 다기능 레이다 소프트웨어 개발의 타당성 연구 (A Feasibility Study on the Development of Multifunctional Radar Software using a Model-Based Development Platform)

  • 김승련;윤덕근;오선진;이의혁;민사원;오현수 ;김은희
    • 한국시뮬레이션학회논문지
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    • 제32권3호
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    • pp.23-31
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    • 2023
  • 소프트웨어 개발에는 시스템 엔지니어링 프로세스와 유사한 요구 사항 분석, 설계, 구현, 단위 테스트 및 통합 테스트를 포함한 일련의 단계가 포함된다. 본 연구는 다기능 레이다 소프트웨어를 개발하기 위해 MathWorks사의 모델 기반 설계 플랫폼을 활용하고 타당성과 효율성을 평가하였다. 기존 레이다 소프트웨어의 개발은 통합적인 형태보다는 단일 알고리즘 단위로 이루어졌기 때문에, 요구 분석이나 통합 테스트가 별도로 이루어졌고, 이들에 대한 통합 관리를 위해 추가적인 도구나 노력을 요구하였다. 본 논문에서 적용한 모델 기반 플랫폼은 요구사항 분석 및 할당, 시뮬레이션을 통한 알고리즘 개발, 배포를 위한 자동 코드 생성, 통합 요구사항 테스트 및 결과 관리를 위한 통합 개발 환경을 제공한다. 이 플랫폼을 통해 다기능 레이다 소프트웨어의 다단계 모델을 개발하고, 테스트 하네스를 사용하여 검증하며, 요구 사항을 관리하고, 자동 코드 생성툴을 사용하여 하드웨어 배포 가능한 언어로 변환하는 전과정을 수행하였다. 이러한 모델 기반 통합 개발을 통해 잘못된 의사소통이나 기타 인적 요인으로 인한 오류를 줄이고 개발 일정과 비용을 절감할 수 있을 것으로 기대한다.

MAGIC: GALILEO and SBAS Services in a Nutshell

  • Zarraoa, N.;Tajdine, A.;Caro, J.;Alcantarilla, I.;Porras, D.
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 International Symposium on GPS/GNSS Vol.1
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    • pp.27-31
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    • 2006
  • GNSS Services and Applications are today in permanent evolution in all the market sectors. This evolution comprises: ${\bullet}$ New constellations and systems, being GALILEO probably the most relevant example, but not the only one, as other regions of the world also dwell into developing their own elements (e.g. the Chinese Beidou system). ${\bullet}$ Modernisation of existing systems, as is the case of GPS and GLONASS ${\bullet}$ New Augmentation services, WAAS, EGNOS, MSAS, GRAS, GAGAN, and many initiatives from other regions of the world ${\bullet}$ Safety of Life services based on the provision of integrity and reliability of the navigation solutions through SBAS and GBAS systems, for aeronautical or maritime applications ${\bullet}$ New Professional applications, based on the unprecedented accuracies and integrity of the positioning and timing solutions of the new navigation systems with examples in science (geodesy, geophysics), Civil engineering (surveying, construction works), Transportation (fleet management, road tolling) and many others. ${\bullet}$ New Mass-market applications based on cheap and simple GNSS receivers providing accurate (meterlevel) solutions for daily personal navigation and information needs. Being on top of this evolving market requires an active participation on the key elements that drive the GNSS development. Early access to the new GNSS signals and services and appropriate testing facilities are critical to be able to reach a good market position in time before the next evolution, and this is usually accessible only to the large system developers as the US, Europe or Japan. Jumping into this league of GNSS developers requires a large investment and a significant development of technology, which may not be at range for all regions of the world. Bearing in mind this situation, MAGIC appears as a concept initiated by a small region within Europe with the purpose of fostering and supporting the development of advanced applications for the new services that can be enabled by the advent of SBAS systems and GALILEO. MAGIC is a low cost platform based on the application of technology developed within the EGNOS project (the SBAS system in Europe), which encompasses the capacity of providing real time EGNOS and, in the near future, GALILEO-like integrity services. MAGIC is designed to be a testing platform for safety of life and liability critical applications, as well as a provider of operational services for the transport or professional sectors in its region of application. This paper will present in detail the MAGIC concept, the status of development of the system within the Madrid region in Spain, the results of the first on-field demonstrations and the immediate plans for deployment and expansion into a complete SBAS+GALILEO regional augmentation system.

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블록체인 자동화도구 개발과 전자투표 적용사례 (A Blockchain Network Construction Tool and its Electronic Voting Application Case)

  • ;;김옥기;이경희;조완섭
    • 한국빅데이터학회지
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    • 제6권2호
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    • pp.151-159
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    • 2021
  • 블록체인 네트워크를 구축하려면 다양한 유형의 IT 지식과 기술이 필요할 뿐 아니라 장시간의 번거로운 과정이 필요하다. 이러한 한계를 극복하기 위해 MS사와 같은 글로벌 IT 기업들은 클라우드 기반 블록체인 서비스를 제공하고 있다. 본 논문에서는 블록체인 개발자, 블록체인 운영자와 기업이 자신의 인프라에 블록체인을 보다 편안하게 배치할 수 있도록 하는 블록체인 기반 구축 및 관리 도구를 제안한다. 이 도구는 대표적인 프라이빗 블록체인 플랫폼 중 하나인 Hyperledger Fabric과 네트워크 전체 배포를 지원하는 오픈소스 IT 자동화 엔진인 Ansible을 사용하여 구현한다. 복잡하고 반복적인 텍스트 명령 대신 사용자가 블록체인 네트워크를 원활하게 설정, 배포 및 상호 작용할 수 있는 사용자 친화적인 웹 대시보드 인터페이스를 제공한다. 이 제안된 솔루션을 통해 블록체인 개발자, 운영자 및 블록체인 연구자는 블록체인 인프라를 보다 쉽게 구축하여 시간과 비용을 절약할 수 있다. 제안된 도구의 유용성과 편의성을 검증하기 위해 전자투표를 수행하는 블록체인 네트워크를 구축하여 테스트하였다. 10개 이상의 설정 파일을 작성하고 수백 줄에 걸쳐 명령을 실행하는 블록체인 네트워크 구성을 그래픽 사용자 인터페이스에서 간단한 입력 및 클릭 조작으로 대체할 수 있어 사용자의 편의성과 구축시간을 절약을 확인할 수 있었다. 제안된 블록체인 도구는 앞으로 식품안전 공급망 구축 등 다양한 분야에서 신뢰 데이터 인프라 구축에 활용될 예정이다.

NUWARD SMR safety approach and licensing objectives for international deployment

  • D. Francis;S. Beils
    • Nuclear Engineering and Technology
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    • 제56권3호
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    • pp.1029-1036
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    • 2024
  • Drawing on the deep experience and understanding of the principles of nuclear safety, as well as many years of nuclear power plant design and operation, the EDF led NUWARD SMR Project is developing a design for a Small Modular Reactor (SMR) of 340 MWe composed of two 170 MWe independent units, that will supplement the offering of high-output nuclear reactors, especially in response to specific needs such as replacement of fossil-fuelled power plants. NUWARD SMR is a mix of proven and innovative design features that will make it more commercially competitive, while integrating safety features that comply with the highest international standards. Following the principles of redundancy and diversity and rigorous application of Defence in Depth (DID), with an international view on nuclear safety licensing, the Project also incorporates new safety approaches into its design development. The NUWARD SMR Project has been in development for a number of years, it entered conceptual design formally in mid-2019 and entered Basic Design in 2023. The objective of the concept design phase was to confirm the project technological choices and to define the first design configuration of the NUWARD SMR product, to document it, in order to launch pre-licensing with the French Safety Authority (ASN) and to define its estimated cost and its subsequent development and construction schedules. As a delivery milestone the Safety Options file (called the Dossier d'Options de Sûreté (DOS)) has been submitted to ASN in July 2023 for their opinion. An integral part of the NUWARD SMR Project, is not only to deliver a design suitable for France and to satisfy French regulation, but to develop a product suitable and indeed desirable, for the international market, with a first focus in Europe. In order to achieve its objectives and realise its market potential, the NUWARD SMR Project needs to define and realise its safety approach within an international environment and that is the key subject of this paper. The following paper: • Summarises the foundation principles and technological background which underpin the design; • Contextualises the key design features with regard to the international safety regulatory framework with particular emphasis on innovative passive safety aspects; • Illustrates the Project activities in preparation for first licensing in France, and also a wider international view via the ASN led Joint Early Review of the NUWARD SMR design, including Finnish and Czech Republic regulators, recently joined by the Swedish, Polish and Dutch regulators; • Articulates the collaborative approach to design development from involvement with the Project partners (the Commissariat à l'énergie atomique et aux énergies alternatives (CEA), Naval Group, TechnicAtome, Framatome and Tractebel) to the establishment of the International NUWARD Advisory Board (INAB), to gain greater international insight and advice; • Concludes with the focus on next steps into detailed design development, standardisation of the design and its simplification to enhance its commercial competitiveness in a context of further harmonisation of the nuclear safety and licensing requirements and aspirations.

기상조절용 하이브리드 로켓의 실험 설계 및 활용연구 (Study on Weather Modification Hybrid Rocket Experimental Design and Application)

  • 차주완;김부요;;노용훈;고아름;김선희;박동오;박지만;구해정;장기호;이용희;김수종
    • 대기
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    • 제34권2호
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    • pp.203-216
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    • 2024
  • The National Institute of Meteorological Sciences in Korea has developed the Weather Modification Hybrid Rocket (WMHR), an advanced system that offers enhanced stability and cost-effectiveness over conventional solid-fuel rockets. Designed for precise operation, the WMHR enables accurate control over the ejection altitude of pyrotechnics by modulating the quantity of oxidizer, facilitating specific cloud seeding at various atmospheric layers. Furthermore, the rate of descent for pyrotechnic devices can be adjusted by modifying parachute sizes, allowing for controlled dispersion time and concentration of seeding agents. The rocket's configuration also supports adjustments in the pyrotechnic device's capacity, permitting tailored seeding agent deployment. This innovation reflects significant technical progression and collaborations with local manufacturers, in addition to efforts to secure testing sites and address hybrid rocket production challenges. Notable outcomes of this project include the creation of a national framework for weather modification technology utilizing hybrid rockets, enhanced cloud seeding methods, and the potential for broader meteorological application of hybrid rockets beyond precipitation augmentation. An illustrative case study confirmed the WMHR's operational effectiveness, although the impact on cloud seeding was limited by unfavorable weather conditions. This experience has provided valuable insights and affirmed the system's potential for varied uses, such as weather modification and deploying high-altitude meteorological sensors. Nevertheless, the expansion of civilian weather rocket experiments in Korea faces challenges due to inadequate infrastructure and regulatory limitations, underscoring the urgent need for advancements in these areas.

Performance of Drip Irrigation System in Banana Cultuivation - Data Envelopment Analysis Approach

  • Kumar, K. Nirmal Ravi;Kumar, M. Suresh
    • Agribusiness and Information Management
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    • 제8권1호
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    • pp.17-26
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    • 2016
  • India is largest producer of banana in the world producing 29.72 million tonnes from an area of 0.803 million ha with a productivity of 35.7 MT ha-1 and accounted for 15.48 and 27.01 per cent of the world's area and production respectively (www.nhb.gov.in). In India, Tamil Nadu leads other states both in terms of area and production followed by Maharashtra, Gujarat and Andhra Pradesh. In Rayalaseema region of Andhra Pradesh, Kurnool district had special reputation in the cultivation of banana in an area of 5765 hectares with an annual production of 2.01 lakh tonnes in the year 2012-13 and hence, it was purposively chosen for the study. On $23^{rd}$ November 2003, the Government of Andhra Pradesh has commenced a comprehensive project called 'Andhra Pradesh Micro Irrigation Project (APMIP)', first of its kind in the world so as to promote water use efficiency. APMIP is offering 100 per cent of subsidy in case of SC, ST and 90 per cent in case of other categories of farmers up to 5.0 acres of land. In case of acreage between 5-10 acres, 70 per cent subsidy and acreage above 10, 50 per cent of subsidy is given to the farmer beneficiaries. The sampling frame consists of Kurnool district, two mandals, four villages and 180 sample farmers comprising of 60 farmers each from Marginal (<1ha), Small (1-2ha) and Other (>2ha) categories. A well structured pre-tested schedule was employed to collect the requisite information pertaining to the performance of drip irrigation among the sample farmers and Data Envelopment Analysis (DEA) model was employed to analyze the performance of drip irrigation in banana farms. The performance of drip irrigation was assessed based on the parameters like: Land Development Works (LDW), Fertigation costs (FC), Volume of water supplied (VWS), Annual maintenance costs of drip irrigation (AMC), Economic Status of the farmer (ES), Crop Productivity (CP) etc. The first four parameters are considered as inputs and last two as outputs for DEA modelling purposes. The findings revealed that, the number of farms operating at CRS are more in number in other farms (46.66%) followed by marginal (45%) and small farms (28.33%). Similarly, regarding the number of farmers operating at VRS, the other farms are again more in number with 61.66 per cent followed by marginal (53.33%) and small farms (35%). With reference to scale efficiency, marginal farms dominate the scenario with 57 per cent followed by others (55%) and small farms (50%). At pooled level, 26.11 per cent of the farms are being operated at CRS with an average technical efficiency score of 0.6138 i.e., 47 out of 180 farms. Nearly 40 per cent of the farmers at pooled level are being operated at VRS with an average technical efficiency score of 0.7241. As regards to scale efficiency, nearly 52 per cent of the farmers (94 out of 180 farmers) at pooled level, either performed at the optimum scale or were close to the optimum scale (farms having scale efficiency values equal to or more than 0.90). Majority of the farms (39.44%) are operating at IRS and only 29 per cent of the farmers are operating at DRS. This signifies that, more resources should be provided to these farms operating at IRS and the same should be decreased towards the farms operating at DRS. Nearly 32 per cent of the farms are operating at CRS indicating efficient utilization of resources. Log linear regression model was used to analyze the major determinants of input use efficiency in banana farms. The input variables considered under DEA model were again considered as influential factors for the CRS obtained for the three categories of farmers. Volume of water supplied ($X_1$) and fertigation cost ($X_2$) are the major determinants of banana farms across all the farmer categories and even at pooled level. In view of their positive influence on the CRS, it is essential to strengthen modern irrigation infrastructure like drip irrigation and offer more fertilizer subsidies to the farmer to enhance the crop production on cost-effective basis in Kurnool district of Andhra Pradesh, India. This study further suggests that, the present era of Information Technology will help the irrigation management in the context of generating new techniques, extension, adoption and information. It will also guide the farmers in irrigation scheduling and quantifying the irrigation water requirements in accordance with the water availability in a particular season. So, it is high time for the Government of India to pay adequate attention towards the applications of 'Information and Communication Technology (ICT) and its applications in irrigation water management' for facilitating the deployment of Decision Supports Systems (DSSs) at various levels of planning and management of water resources in the country.

중국군의 해양작전능력과 한국군의 과제 (PRC Maritime Operational Capability and the Task for the ROK Military)

  • 김민석
    • Strategy21
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    • 통권33호
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    • pp.65-112
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    • 2014
  • Recent trends show that the PRC has stepped aside its "army-centered approach" and placed greater emphasis on its Navy and Air Force for a wider range of operations, thereby reducing its ground force and harnessing its economic power and military technology into naval development. A quantitative growth of the PLA Navy itself is no surprise as this is not a recent phenomenon. Now is the time to pay closer attention to the level of PRC naval force's performance and the extent of its warfighting capacity in the maritime domain. It is also worth asking what China can do with its widening naval power foundation. In short, it is time to delve into several possible scenarios I which the PRC poses a real threat. With this in mind, in Section Two the paper seeks to observe the construction progress of PRC's naval power and its future prospects up to the year 2020, and categorize time frame according to its major force improvement trends. By analyzing qualitative improvements made over time, such as the scale of investment and the number of ships compared to increase in displacement (tonnage), this paper attempts to identify salient features in the construction of naval power. Chapter Three sets out performance evaluation on each type of PRC naval ships as well as capabilities of the Navy, Air Force, the Second Artillery (i.e., strategic missile forces) and satellites that could support maritime warfare. Finall, the concluding chapter estimates the PRC's maritime warfighting capability as anticipated in respective conflict scenarios, and considers its impact on the Korean Peninsula and proposes the directions ROK should steer in response. First of all, since the 1980s the PRC navy has undergone transitions as the focus of its military strategic outlook shifted from ground warfare to maritime warfare, and within 30 years of its effort to construct naval power while greatly reducing the size of its ground forces, the PRC has succeeded in building its naval power next to the U.S.'s in the world in terms of number, with acquisition of an aircraft carrier, Chinese-version of the Aegis, submarines and so on. The PRC also enjoys great potentials to qualitatively develop its forces such as indigenous aircraft carriers, next-generation strategic submarines, next-generation destroyers and so forth, which is possible because the PRC has accumulated its independent production capabilities in the process of its 30-year-long efforts. Secondly, one could argue that ROK still has its chances of coping with the PRC in naval power since, despite its continuous efforts, many estimate that the PRC naval force is roughly ten or more years behind that of superpowers such as the U.S., on areas including radar detection capability, EW capability, C4I and data-link systems, doctrines on force employment as well as tactics, and such gap cannot be easily overcome. The most probable scenarios involving the PRC in sea areas surrounding the Korean Peninsula are: first, upon the outbreak of war in the peninsula, the PRC may pursue military intervention through sea, thereby undermining efforts of the ROK-U.S. combined operations; second, ROK-PRC or PRC-Japan conflicts over maritime jurisdiction or ownership over the Senkaku/Diaoyu islands could inflict damage to ROK territorial sovereignty or economic gains. The PRC would likely attempt to resolve the conflict employing blitzkrieg tactics before U.S. forces arrive on the scene, while at the same time delaying and denying access of the incoming U.S. forces. If this proves unattainable, the PRC could take a course of action adopting "long-term attrition warfare," thus weakening its enemy's sustainability. All in all, thiss paper makes three proposals on how the ROK should respond. First, modern warfare as well as the emergent future warfare demonstrates that the center stage of battle is no longer the domestic territory, but rather further away into the sea and space. In this respect, the ROKN should take advantage of the distinct feature of battle space on the peninsula, which is surrounded by the seas, and obtain capabilities to intercept more than 50 percent of the enemy's ballistic missiles, including those of North Korea. In tandem with this capacity, employment of a large scale of UAV/F Carrier for Kill Chain operations should enhance effectiveness. This is because conditions are more favorable to defend from sea, on matters concerning accuracy rates against enemy targets, minimized threat of friendly damage, and cost effectiveness. Second, to maintain readiness for a North Korean crisis where timely deployment of US forces is not possible, the ROKN ought to obtain capabilities to hold the enemy attack at bay while deterring PRC naval intervention. It is also argued that ROKN should strengthen its power so as to protect national interests in the seas surrounding the peninsula without support from the USN, should ROK-PRC or ROK-Japan conflict arise concerning maritime jurisprudence. Third, the ROK should fortify infrastructures for independent construction of naval power and expand its R&D efforts, and for this purpose, the ROK should make the most of the advantages stemming from the ROK-U.S. alliance inducing active support from the United States. The rationale behind this argument is that while it is strategically effective to rely on alliance or jump on the bandwagon, the ultimate goal is always to acquire an independent response capability as much as possible.

해저 지질구조내 $CO_2$ 저장기술의 연구개발 동향 및 향후 국내 실용화 방안 (The Latest Progress on the Development of Technologies for $CO_2$ Storage in Marine Geological Structure and its Application in Republic of Korea)

  • 강성길;허철
    • 한국해양환경ㆍ에너지학회지
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    • 제11권1호
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    • pp.24-34
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    • 2008
  • 지구 온난화를 완화하기 위한 온실가스 대량 감축 기술의 하나로써 이산화탄소 포집 및 저장기술(Carbon dioxide Capture and Storage; CCS)이 최근 국제적으로 주목받고 있다. 본 논문에서는 CCS 기술 중 대규모의 $CO_2$를 해양의 퇴적층에 저장하고자 하는 $CO_2$ 해양지중저장기술을 중점으로 하여 국내외 관련 연구개발동향을 분석하고 이를 토대로 향후 국내 실용화 방안을 제안하고자 한다. '해저 지질구조내 $CO_2$ 저장기술은 $CO_2$ 해양지중저장기술)'은 지구 온난화 주범인 $CO_2$의 40% 가량이 배출되는 대규모 발생원 (발전소 등)에서 포집된 $CO_2$를 초임계상태나 액체 상태로 가압하여 파이프라인이나 선박 등을 통해 수송한 후, 최종적으로 해양의 퇴적층에 대규모로 수백-수천년 이상 장기간 저장 및 관리하는 기술을 말한다. $CO_2$ 해양지중저장 기술개발을 위해서는 저장후보지 탐색 및 저장공간내 $CO_2$ 거동 모니터링과 관련한 $CO_2$ 해양지중저장 기반기술, 포집된 $CO_2$를 선박 또는 파이프라인으로 수송하여 저장지에 주입시키는데 요구되는 제반 플랜트 및 설비구축과 관련한 $CO_2$ 해양플랜트 설비기술, 그리고 주입과정 또는 사후에 발생할 수 있는 $CO_2$노출 가능성과 환경에의 잠재적 영향을 평가하여 환경안정성이 담보된 $CO_2$저장이 되도록 하는 $CO_2$해양환경평가기술 등 3개 세부분야에 대한 연구가 요구된다. 국내에서 $CO_2$ 저장기술은 2005년부터 해양수산부 연구사업으로 한국해양연구원이 본격적으로 연구개발을 추진하였으며, 본 사업에서는 2005년부터 2009년까지 핵심 기반기술을 개발하고, 2010년부터 2014년까지 1만톤급 파일롯 저장을 통한 개발기술의 실증을 목표로 하고 있다. 이를 토대로 2015년부터 발전소 또는 제철소 $CO_2$ 포집기술과 연계하여 민간주도로 동해가스전 등을 대상으로 하여 보급형 100만톤급 $CO_2$ 저장을 추진할 필요가 있다. 이를 통해 향후 2050년까지 연간 1억톤 $CO_2$를 처리하여 매년 2조원 이상의 환경비용을 절감하는 국내 실용화 방안을 모색하고 있다.

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경호탐지견의 운용실태 및 발전방안 (Examination of the Current Situations of Security Dogs and it's Development Plans)

  • 박형규;김두현
    • 시큐리티연구
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    • 제14호
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    • pp.215-234
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    • 2007
  • 현재 약 2,500여개가 넘는 경호업체들이 활동하고 있지만 이들 업체 중 상당수가 부실경영과 자본력의 압박, 인력관리 능력 부족 등으로 인하여 영세성을 면치 못하고 있다. 따라서 보다 과학적인 경호방법을 동원하고 경호대상자에 대한 양질의 서비스를 제공할 뿐만 아니라 사전 예방적인 수단을 강구하는 측면에서 경호탐지견 운용을 일반화 할 것이 요구되고 있다. 첫째, 경호탐지견으로 적합한 품종인 국내산 진도견, 삽살견 등을 경호탐지견으로 배양한다. 특히 우수한 품종의 진도견을 경호탐지견의 임무에 적합한 훈련을 통하여 적절히 운용한다면 우리 고유의 진도견을 산업화하고 보호육성하는 취지에도 맞아 떨어지는 효과를 얻을 수 있다. 둘째, 경호탐지견을 양성하고 훈련을 확대한다. 경호탐지견은 훈련방법에 따라서 2가지 이상의 임무를 수행할 수가 있다. 즉, 복종훈련을 마친 후 임무에 적합한 경계 또는 탐지 등 특수훈련을 실시하여 경호활동에 투입할 수가 있는 것이다. 셋째, 훈련된 경호탐지견을 임무에 맞게 운용한다. 경호탐지견은 대인경호, 시설경비, 폭발물 및 마약 탐지, 기타 맹인안내 등 다양한 경호대상자의 보호수단으로 운용할 수 있다. 넷째, 경호탐지견 운용 전문 인력을 양성하고 전문적인 경호탐지견 훈련센터를 운영하여야 한다. 경호탐지견 운용 요원을 양성하기 위해서는 대학(교)의 경호 관련학과에 "경호탐지견 운용론" 등의 교과목을 개설하고 경호탐지견의 품종을 개량하며, 경호탐지견훈련센터를 설치하여 임무에 적합한 훈련을 훈련지도사로 하여금 실시하게 하는 것이다.

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