• 제목/요약/키워드: Second line of defense

검색결과 22건 처리시간 0.024초

유우유방의 유방염에 대한 자연방어기전 (Immunophysiological Defense Mechanism of the Bovine Udder on Mastitis A Review)

  • 한홍율
    • 한국임상수의학회지
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    • 제3권1호
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    • pp.277-298
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    • 1986
  • This paper reviews the mechanisms effecting host defense in the mammary gland and assesses their possible in preventing of bovine mastitis. The streak canal is the first line of defense against invading mastitis pathogens, providing a physical barrier and antibacterial substances. The milk leukocytes are a second defense line by ingesting pathogens breached the streak canal by multiplication, physical passage, and propulsion during milking. Leukocytosis in milk and enhancement of the phagocytic defense machanisms of the udder were accomplished by inserting intramammary devices. Milk antibodies serum derived and synthesized in mamma tissue aggregate and opsonise bacteria, agglutinate and neutralise toxins, and inhibit. binding of bacteria to epitherial surfaces. Vaccination generally has been unsuccessful because protection is not absolute, but immunization is useful in controlling specific pathogens. Immunostimulant to enhance locally the protective nature of antibody-producing plasma cells concentrated in internal teat end tissue may be effective in reducing the occurrence of infection, but ineffective in preventing intramammary infections.

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해양공간 인식과 확장의 관점에서 본 한국 해양전략의 발전 방향 (Future Direction of ROK Navy's Maritime Strategy based on the Recognition and Expansion of Maritime Sphere)

  • 정광호
    • Strategy21
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    • 통권44호
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    • pp.142-176
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    • 2018
  • So far, the main threat to South Korea was North Korea. That is why South Korea established a strategy based on the threat of North Korea and most of the budget on defense was used to deter North Korea. Even though the neighboring countries(China, Japan, and Russia) are growing as a real threat with abilities and intentions based on their powerful naval forces, South Korea has not yet been able to establish a strategy that regards neighboring countries as a threat. But the decades-old structural mechanism of the Korean security environment is undergoing a radical change on April 27, 2018, through the South-North summit and the Panmunjom Declaration. Under the changing security environment, South Korea was placed in a complicated dilemma that had to deal with threats of two axes(China), three axes(China, Japan), and four axes(Japan, Russia). If the one axis threat(North Korea) is dominated by land threats, the second, third and fourth axis threats are threats from the sea. This paper analyzed the maritime strategy of Korea within the framework of maritime-geopolitics, in other words recognition and expansion of the sphere of maritime. I have designed that the maritime defense space that we can deny from threats is divided into three lines of defense: 1 line (radius 3,000km), 2 lines (2,000km), and 3 lines (1,000km). The three defense zones of the three lines were defined as an active defense(1 line), defensive offense(2 line), active offense(3 line). The three defense zones of the three lines were defined as the sphere of core maritime, As a power to deny the sphere of core maritime, it was analyzed as a maneuvering unit, a nuclear-powered submarine, the establishment of missile strategy, and the fortification of islands station. The marine strategy of South Korea with these concepts and means was defined as 'Offensive Maritime Denial Strategy'.

일본 방위전략의 공세적 변화가 한국 해군에 주는 전략적 함의 - 일본 '수륙기동단(水陸機動團)' 창설에 대한 분석을 중심으로 - (An Offensive Change of Japan's Defense Strategy and Strategic Implication to the South Korea Navy: Focusing on the Japan's Amphibious Rapid Deployment Brigade Creation)

  • 정광호
    • Strategy21
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    • 통권42호
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    • pp.83-113
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    • 2017
  • After defeat in World War II, Japan's Peace Constitution committed the country to forego the acquisition of offensive military capabilities. However, in the midst of the post-cold war period, Japan began to change its security posture in line with the so-called 'normal state theory', which called for a more robust defense posture and expanded security activities. The second Abe administration promoted these security policies by issuing a National Security Strategy as well as a new National Defense Program Outline(NDPO) in 2013 and by establishing new security institutions such as the National Security Council. The Abe administration also adopted the new concept of a 'Unified Mobile Defense Force' in the 2013 which replaced the 'Dynamic Defense Force' as a new criteria for the Self-Defense Force's acquisition of military capabilities. In this new concept of military capabilities, the Ground Self-Defense Force is planning to replace existing divisions with mobile divisions and to form 'Amphibious Rapid Deployment Bridge' for the first time in 2018, which has long been taboo in Japan. Japan has experience a Marine Corps in the past. Likewise, an offensive changes in the military strategy can change the spectrum of strategy and 'Amphibious Rapid Deployment Bridge' plays a big role in this. Furthermore, Japan is increasing the Coast Guard's budget and capabilities in preparation for contingencies around the Senkaku islands (called the Diaoyu in Chinese). The South Korea navy should utilize Japan's changing security posture to deter immediate threat such as North Korea's military provocations and potential enemy threat such as China, Japan, Russia.

『동무유고(東武遺稿)』 「진정(陳情)」에 대한 기초적 연구를 통한 난해어구의 교감 - "양추지어렵빈박차항(洋醜之漁獵頻泊汊港), 아인지경목항거연자(峩人之耕牧恒據沿䐉)"를 중심으로 - (A Basic Investigation on 『Dongmuyugo(東武遺稿)』 「Jinjung(陳情)」 and the Revision of the Abstruse Phrase of "洋醜之漁獵頻泊汊港, 峩人之耕牧恒據沿䐉")

  • 최성운
    • 대한한의학원전학회지
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    • 제34권2호
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    • pp.127-168
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    • 2021
  • Objectives : First, the time of publication of the writing Jinjeong(陳情), was identified with consideration of current affairs at the time in Hamgyeongdo. Second, the relevance between agricultural policies and military/defense policies were identified. Third, based on these findings, the phrase "洋醜之漁獵頻泊汊 港, 峩人之耕牧恒據沿䐉" was throughly examined within its historical context. Methods : First, the time of publication of the writing Jinjeong(陳情), was identified with consideration of current affairs at the time in Hamgyeongdo. Second, the relevance between agricultural policies and military/defense policies were identified. Third, based on these findings, the phrase "洋醜之漁獵頻泊汊 港, 峩人之耕牧恒據沿䐉" was throughly examined within its historical context. Results & Conclusions : 1. The Jinjeong(陳情) of the Dongmuyugo(東武遺稿) is a writing on crossing borders into the Maritime Province of Siberia, which was written between the end of September and December of 1870. 2. The phrase "洋醜之漁獵頻泊汊港" is related to the incident when a handover line was at anchor in the Unggi harbor three times in 1869. 3. "我人之耕牧恒據沿海" refers to the rumor spread in 1870 about Russia being an ideal country that practiced ideal politics, to the extent of cattle and horse being gifted to immigrants into the country.

A strategic analysis of stationary radiation portal monitors and mobile detection systems in border monitoring

  • Coogan, Ryan;Marianno, Craig;Charlton, William
    • Nuclear Engineering and Technology
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    • 제52권3호
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    • pp.626-632
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    • 2020
  • Radiation Portal Monitors (RPMs) are our primary border defense against nuclear smuggling, but are they still the best way to spend limited funds? The purpose of this research is to strategically compare RPM defense at the border with state-side mobile detectors. Limiting the problem to a comparison of two technologies, a decision-maker can prioritize how to best allocate resources, by reinforcing the border with stationary overt RPMs, or by investing in Mobile Radiation Detection Systems (MRDs) which are harder for an adversary to detect but may have other weaknesses. An abstract, symmetric network was studied to understand the impact of initial conditions on a network. An asymmetric network, loosely modeled on a state transportation system, is then examined for the technology that will maximally suppress the adversary's success rate. We conclude that MRDs, which have the advantage of discrete operation, outperform RPMs deployed to a border. We also conclude that MRDs maintain this strategic advantage if they operate with one-tenth the relative efficiency of their stationary counter-parts or better.

GIS를 활용한 고구려 국내성 시기의 관방체계 검토 - 압록강 중상류~요하 중류를 중심으로 - (GIS-based review of Goguryeo's defense system during the Gungnaeseong Period with the focus on the upper and middle reaches of the Amnok River and the mid-stream region of the Liohe River)

  • 홍밝음;강동석
    • 헤리티지:역사와 과학
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    • 제54권1호
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    • pp.260-279
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    • 2021
  • 고구려는 산성을 중심으로 하는 독특한 방어체계를 갖추고 있었으며, 그동안의 고구려 관방체계 연구는 이러한 성곽의 배치 관계를 중심으로 이루어졌다. 다만 대부분의 연구자가 언급한 바와 같이 고구려 관방체계에 대한 연구는 대체로 개별적인 조사 보고나 자료 소개 정도에 그치고 있어 그 중요도에 비해 연구가 미진한 편이다. 따라서 여기에서는 이러한 자료 접근의 한계를 감안하여 고구려 성곽 연구의 외연을 확장하는 차원에서 기존 연구 성과를 기초로 국내성 시기에 압록강 중상류~요하 중류에서 운영되었다고 판단되는 고구려 성곽를 정리해보고 GIS를 이용하여 고구려 국내성 시기의 관방체계를 재구성·재검토하였다. 그 결과 첫째, 고구려 국내성 시기의 주요 교통로는 기존 연구 결과와 어느 정도 부합하는 것을 확인하였다. 즉 중기의 주요 교통로는 소자하-부이강-신개하-집안 일대로 여겨지며, 이는 이곳을 중심으로 거점성과 함께 다수의 성곽이 축조된 것을 통해서도 알 수 있다. 둘째, 압록강 중상류~요하 중류에서 고구려의 거점성은 총 7개소가 확인되며, 거점성과 주변 성곽의 연계는 1차 방어선이 좀 더 긴밀한 관계를 형성하면서 2차와 3차 방어선으로 갈수록 좀 더 느슨하면서 넓은 범위를 방어한다. 셋째, 주요 교통로의 방어체계를 살펴보면 1차 방어선의 거점성은 최진보산성, 고이산성, 철배산성으로, 대체로 반경 20km-20km-20km 내외의 방어선을 구축하며 2차와 3차 방어선은 반경 40km-40km로 방어선이 구축된다. 이후 마지막 방어성 도성은 3차 방어 거점성인 오녀산성과 반경 60km-60km의 방어선을 구축하게 되는데, 도성 부근에 규모가 있는 성곽을 축조하지 않고 관애로 방어체계를 구축하는 것이 큰 특징이라고 할 수 있다. 마지막으로 거점성 간의 연계 관계를 살펴보면 거점성을 중심으로 관방체계가 1차적으로 형성되고 이들은 다시 가장 근접한 거점성과 연계된 방어체계를 구성하면서 외부에서 침입하는 적군을 방어한 것을 알 수 있다.

Using DGPS as An Acceleration Sensor for Airborne Gravimetry

  • Zhang, Kaidong;Shen, Lincheng;Hu, Xiaoping;Wu, Meiping
    • 한국항해항만학회:학술대회논문집
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    • 한국항해항만학회 2006년도 International Symposium on GPS/GNSS Vol.1
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    • pp.327-332
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    • 2006
  • In airborne gravimetry, there are two data streams. One is the specific force measured by an air/sea gravimeter or accelerometers, the other is kinematic acceleration measured by DGPS. And the difference of them provides the gravity disturbance information. To satisfy the requirement of most applications, an accuracy of 1mGal $(1mCal=10^{-5}m/s^{2})$ with a spatial resolution of 1km is the aim of current airborne gravimetry. There are two different methods to derive the kinematic acceleration. The generally used method is to differentiate the position twice, and the position can be calculated by commercial DGPS software. The main defect of this method is that integer ambiguities need to be fixed to get the precise position solution, but it's not a trivial thing for long base line. And to fix integer ambiguities, the noisier iono-free measurement is used. When differentiation is applied, noise is amplified and will influence the accuracy of acceleration. The other method is to get carrier phase acceleration by differentiate the carrier phase first, and then using the acceleration of GPS satellite to derive the vehicle acceleration. The main advantages include that fixing integer ambiguities is not needed anymore, position can be relaxed to about 10 meters, and smoother acceleration can be got since iono-free measurement is not needed. In some literatures, it's considered that the dynamic performance of the second method is inferior to that of the first. Through analysis, it is found that the performance degradation in dynamic environment results from the simplification of the GPS carrier phase observable model. And an iterative algorithm is presented to compensate the model error. Using a dynamic GPS data from an aeromagnetic survey, the importance of this compensation is showed at last.

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Design and implementation of signal processing system for airborne active homing radar

  • Lee, Young-Sung;Kim, Doh-Hyun;Kim, Lee-Han;Kim, Young-Chae
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2001년도 ICCAS
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    • pp.158.2-158
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    • 2001
  • This paper introduces the design and implementation of a signal processing system for an airborne active homing radar system. This airborne active homing radar system uses the pulse Doppler radar of high PRF (Pulse Repetition Frequency) for computation of exact relative velocity of the target. This system carries out two operations mainly. The first is to transmit and receive microwave signal through the antenna. The second is to calculate the relative velocity of the target taking advantage of the Doppler frequency signal reflected from the target and detect the angle error between a target and an antenna LOS (Line Of Sight) to make the antenna direction coincident with the target. The signal processing system has a role of the latter.

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피난기구 사용시간 실험분석을 통한 안전체험교육 개선방안 (Plans to Improve Safety Experience Education through the Experimental Analysis of Evacuation Equipment)

  • 이정일;이성은
    • 한국화재소방학회논문지
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    • 제33권6호
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    • pp.35-42
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    • 2019
  • 본 논문은 피난기구의 사용시간 실험분석을 통한 안전체험교육 개선에 관한 방향을 알아보기 위해 진행되었다. 연구를 위해 피 실험자들을 체격과 체중이 비슷한 그룹으로 나누어 구성하였고, 4가지 피난기구를 직접 체험하게 함으로서 체험시간을 측정하여 분석하였다. 피난기구 설치에서부터 탈출까지의 전체시간 분석에서 완강기-경사식구조대-수직구조대-공기안전매트 순으로 탈출시간이 소요되었다. 피난기구의 탈출시간만 분석했을 경우에는 공기안전매트-경사식구조대-완강기-수직구조대 순으로 탈출시간이 분석되었다. 완강기의 1차 2차 실험에서 나타난 것처럼 1차 시간은 경험 후에 2차 시도에서 시간이 줄어들었다. 이처럼 체험을 통한 교육은 행동의 자신감 증가와 시간의 관리가 가능한 것으로 나타났다. 본 연구의 결론으로 안전교육의 목표는 인명과 재산피해의 최소화이고, 이를 위한 노력으로 많은 사람들에게 교육을 통해 최소화 하는 방법과 자신의 안전을 지키는 교육을 진행한다. 그러므로 더 많은 사람들에게 이러한 효과를 가져 오기 위해서는 체험교육을 통해 학습효과를 높이고, 자기안전을 지키게 하는 노력이 필요하다.

Geometric Sensitivity Index for the GNSS Using Inner Products of Line of Sight Vectors

  • Won, Dae Hee;Ahn, Jongsun;Sung, Sangkyung;Lee, Chulsoo;Bu, Sungchun;Jang, Jeagyu;Lee, Young Jae
    • International Journal of Aeronautical and Space Sciences
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    • 제16권3호
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    • pp.437-444
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    • 2015
  • Satellite selection and exclusion techniques have been applied to the global navigation satellite system (GNSS) with the aim of achieving a balance between navigational performance and computational efficiency. Conventional approaches to satellite selection based on the best dilution of precision (DOP) are excessively computational and complicated. This paper proposes a new method that applies a geometric sensitivity index of individual GNSS satellites. The sensitivity index is derived using the inner product of the line of sight (LOS) vector of each satellite. First, the LOS vector is computed, which accounts for the geometry between the satellite and user positions. Second, the inner product of each pair of LOS vectors is calculated, which indicates the proximities of the satellites to one another. The proximity can be determined according to the sensitivity of each satellite. A post-processing test was conducted to verify the reliability of the proposed method. The proposed index and the results of a conventional approach that measures the dilution of precision (DOP) were compared. The test results demonstrate that the proposed index produces results that are within 96% of those of the conventional approach and reduces the computational burden. This index can be utilized to estimate the sensitivity of individual satellites, obtaining a navigation solution. Therefore, the proposed index applies to satellite selection and exclusion as well as to the sensitivity analyses of multiple GNSS applications.