• 제목/요약/키워드: Fuzzy Evaluation

검색결과 756건 처리시간 0.024초

수질인자의 합성에 의한 하천 레크리에이션 지수 모델의 개발 (Development of River Recreation Index Model by Synthesis of Water Quality Parameters)

  • 서일원;최수연
    • 대한토목학회논문집
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    • 제34권5호
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    • pp.1395-1408
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    • 2014
  • 본 연구에서는 시민들이 하천에서 안전하고 쾌적하게 레크리에이션 활동을 할 수 있도록 종합 수질 정보를 제공하는 하천 레크리에이션 지수 산정 모델을 개발하였다. 하천 레크리에이션 지수 모델은 분변성 대장균 모델과 수질지수 모델을 통합하여 구성하였다. 분변성 대장균 모델에서는 로지스틱 회귀분석을 사용하여 분변성 대장균 등급을 예측하였고, 수질지수 모델에서는 DO, pH, 탁도, 클로로필 a를 퍼지 합성방법을 통해 종합화하여 수질 지수를 산정하였다. 최종 단계에서 분변성 대장균 등급과 수질 지수를 통합하여 하천 레크리에이션 지수를 산정할 수 있도록 모델을 개발하였다. 제안된 모델을 낙동강의 강정고령보 상류 지점에 적용한 결과, 하천 레크리에이션 지수는 개별 수질인자들의 변화를 잘 반영하는 것으로 나타났다. 특히 하천 레크리에이션 지수와 클로로필 a의 상관계수가 -0.85로 나타나 클로로필 a가 하천 레크리에이션 지수에 가장 많은 영향을 미치고 있음을 확인할 수 있었다. 본 모델에서 산정한 종합수질지수는 기존 수질 정보 제공 시스템인 실시간 수질지수보다 보수적인 결과를 보였는데, 이는 등급에 따라 현재의 수질 상태가 어떠한 상태에 속하는지를 계산하고 수질 기준의 불확실성을 적절하게 고려하기 때문인 것으로 판단되었다. 나아가서, 분변성 대장균 등급이 낮을 경우 하천 레크리에이션 지수가 분변성 대장균을 고려하지 않고 있는 실시간 수질지수보다 낮은 결과를 제시하는 것으로 나타났다.

기상청 기상레이더 관측망을 이용한 합성 하이브리드 고도면 강우량(HSR)의 정확도 검증 (Accuracy Evaluation of Composite Hybrid Surface Rainfall (HSR) Using KMA Weather Radar Network)

  • 류근수;정성화;오영아;박홍목;이규원
    • 한국지구과학회지
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    • 제38권7호
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    • pp.496-510
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    • 2017
  • 본 연구는 기상청의 기상레이더 관측망을 이용한 하이브리드 고도면 강우추정 기법 기반의 새로운 정량적 합성강수량 추정 방법을 제시한다. HSR기법은 지형클러터, 빔차폐, 비 기상 에코 및 밝은 띠의 영향을 받지 않는 하이브리드 고도면의 반사도를 합성하는 것이 특징이다. HSR 합성반사도는 정적 HSR (STATIC)과 단일편파레이더에 대한 퍼지로직 기법과 이중편파레이더에 대한 시선방향 질감 기반의 품질관리 절차를 사용하는 동적 HSR (DYNAMIC) 합성으로 구분된다. STATIC과 DYNAMIC은 2014년 5월부터 10월까지 10개의 강우 사례에 대해 기상청 현업용 합성강우(MOSAIC)와 비교검증 하였다. 차폐 영역에서 STATIC, DYNAMIC, MOSAIC의 상관계수는 각각 0.52, 0.78, 0.69이며 평균 상대 오차는 각각 34.08, 30.08, 40.71%로 분석되었다.

A Study on 3D RTLS at Port Container Yards Using the Extended Kalman Filter

  • Kim, Joeng-Hoon;Lee, Hyun-Woo;Kwon, Soon-Ryang
    • International Journal of Fuzzy Logic and Intelligent Systems
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    • 제7권4호
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    • pp.228-235
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    • 2007
  • The main purpose of this paper is to manage the container property effectively at the container yard by applying the RTLS technology to the field of port logistics. Yet, many kinds of noises happen to be inputted with the distance value(between the reader and the tag) which is to be inputted into the location identification algorithm, which makes the distance value jumped due to the system noise of the ultrasonic sensor module and the measurement noise. The Kalman Filter is widely used to prevent this jump occurrence; the noises are eliminated by using the EKF(Extended Kalman Filter) while considering that the distance information of the ultrasonic sensor is non-linear. Also, the 3D RTLS system at the port container yard suggested in this research is designed not to be interrupted for its ultrasonic transmission by positioning the antenna at the front of each sector of the container where the active tags are installed. We positioned the readers, which function as antennas for location identification, to four places randomly in the absolute coordinate and let the positions of the active tags identified by using the distance data delivered from the active tags. For the location identification algorithm used in this paper, the triangulation measurement that is most used in general is applied and newly reorganized to calculate the position of the container. In the first experiment, we dealt with the error resulting in the angle and the distance of the ultrasonic sensor module, which is the most important in the hardware performance; in the second, we evaluated the performance of the location identification algorithm, which is the most important in the software performance, and tested the noise cancellation effects for the EKF. According to the experiment result, the ultrasonic sensor showed an average of 3 to 5cm error up to $45^{\circ}$ in case of $60^{\circ}$ or more, non-reliable linear distances were obtained. In addition, the evaluation of the algorithm performance showed an average of $4^{\circ}{\sim}5^{\circ}$ error due to the error of the linear distance-this error is negligible for most container location identifications. Lastly, the experiment results of noise cancellation and jump preservation by using the EKF showed that noises were removed in the distance information which was entered from the input of the ultrasonic sensor and as a result, only signal was extracted; thus, jumps were able to be removed and the exact distance information between the ultrasonic sensors could be obtained.

스마트폰을 위한 광학식 손떨림 보정 설계 탐색에 관한 연구 (A study on the design exploration of Optical Image Stabilization (OIS) for Smart phone)

  • 이승권;공진흥
    • 디지털콘텐츠학회 논문지
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    • 제19권8호
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    • pp.1603-1615
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    • 2018
  • 본 연구에서는 스마트폰에 적용 가능한 광학식 손떨림 보정 시스템의 저복잡도, 저면적, 저전력 설계를 위하여 자이로스코프의 샘플링 레이트 최적화, 간단한 구조의 정확도가 우수한 자이로필터 설계, 움직임 보정부의 동작속도 최적화, AD/DA 변환기의 비트폭 최적화, 액츄에이터 구동전력을 낮추기 위한 PWM 구동 시 노이즈 평가 등을 제안하였다. 자이로 샘플링 주파수는 5KHz 이상에서 에러 값이 크게 변화가 없는 것으로 확인 되었다. 자이로필터는 퍼지부를 적용하여 손떨림 각도 및 위상 오차에 대한 보상 효과를 검증하였다. PWM 구동은 선형모드 대비 약 50% 이상 소모전력이 감소하는 것을 확인하였으며, 구동 주파수 2MHz 이상에서 영상 노이즈가 감소하는 것을 확인하였다. 움직임 보정부의 동작속도는 제어부 5KHz, 구동부 10KHz로 낮추어도 특성에 문제없는 것으로 확인되었다. AD/DA 변환기의 비트폭은 AD 변환기는 11비트, DA 변환기는 10비트로 최적화되었다.

확정론적 다중의사결정기법을 이용한 최적 홍수저감대책 선정 기법 연구 (A Study on the GIS-based Deterministic MCDA Techniques for Evaluating the Flood Damage Reduction Alternatives)

  • 임광섭;김주철;황의호;이상욱
    • 한국수자원학회논문집
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    • 제44권12호
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    • pp.1015-1029
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    • 2011
  • 전통적인 다기준의사결정(Multi-Criteria Decision Analysis, MCDA)기법은 복수 대안을 평가기준과 의사결정권자의 선호도에 따라 평가하여 유역 전반에 걸친 최적 대안을 선정하는 데 있어 효율적으로 사용되는 기법이다. 하지만, 홍수터 관리를 위한 유역 전반에 걸친 의사결정 정보는 지역적 특색을 반영할 수 있는 공간적 변동성을 체계적으로 파악할 수 있는 능력에 제한을 받고 있다. 이와 관련하여 최적대안 결정시 지리정보체계(GIS)의 적용은 신속하고 정확한 정보를 제공하고, 공간적인 차원에서 야기되는 문제의 해결과 합리적인 자원의 이용 및 배분 등을 수행하여 해당 기술 분야의 전문가들과 최종의사결정권자들의 의사결정과정에서 요구되는 각종 정보를 공간분포형태로 제시할 수 있어 상충하는 여러 목표 간의 갈등을 최소화하고, 투명하고 객관적인 의사결정을 수행할 수 있도록 도와준다. 본 연구에서는 홍수터 해석 분야에서 GIS와 MCDA 기법을 결합(공간형 MCDA기법)하여 홍수피해 저감대책 평가를 수행하였다. 수자원 분야의 고전적인 MCDA기법인 CP (Compromise Programming)와 SCP (Spatial Compromising Programming)기법 적용을 위해 부산 수영강 유역에 대한 사례연구를 통하여 적용성을 평가한 결과 CP기법은 해당 유역에 대해 단일 홍수피해 저감대책만을 제시하는 문제점이 있었으며 GIS와 결합된 SCP기법은 모든 격자지점의 공간특성 반영이 가능하여 관심 지점에 대한 개별 대안을 의사결정권자들에게 제시할 수 있었다.

APPLICATION OF FUZZY SET THEORY IN SAFEGUARDS

  • Fattah, A.;Nishiwaki, Y.
    • 한국지능시스템학회:학술대회논문집
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    • 한국퍼지및지능시스템학회 1993년도 Fifth International Fuzzy Systems Association World Congress 93
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    • pp.1051-1054
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    • 1993
  • The International Atomic Energy Agency's Statute in Article III.A.5 allows it“to establish and administer safeguards designed to ensure that special fissionable and other materials, services, equipment, facilities and information made available by the Agency or at its request or under its supervision or control are not used in such a way as to further any military purpose; and to apply safeguards, at the request of the parties, to any bilateral or multilateral arrangement, or at the request of a State, to any of that State's activities in the field of atomic energy”. Safeguards are essentially a technical means of verifying the fulfilment of political obligations undertaken by States and given a legal force in international agreements relating to the peaceful uses of nuclear energy. The main political objectives are: to assure the international community that States are complying with their non-proliferation and other peaceful undertakings; and to deter (a) the diversion of afeguarded nuclear materials to the production of nuclear explosives or for military purposes and (b) the misuse of safeguarded facilities with the aim of producing unsafeguarded nuclear material. It is clear that no international safeguards system can physically prevent diversion. The IAEA safeguards system is basically a verification measure designed to provide assurance in those cases in which diversion has not occurred. Verification is accomplished by two basic means: material accountancy and containment and surveillance measures. Nuclear material accountancy is the fundamental IAEA safeguards mechanism, while containment and surveillance serve as important complementary measures. Material accountancy refers to a collection of measurements and other determinations which enable the State and the Agency to maintain a current picture of the location and movement of nuclear material into and out of material balance areas, i. e. areas where all material entering or leaving is measurab e. A containment measure is one that is designed by taking advantage of structural characteristics, such as containers, tanks or pipes, etc. To establish the physical integrity of an area or item by preventing the undetected movement of nuclear material or equipment. Such measures involve the application of tamper-indicating or surveillance devices. Surveillance refers to both human and instrumental observation aimed at indicating the movement of nuclear material. The verification process consists of three over-lapping elements: (a) Provision by the State of information such as - design information describing nuclear installations; - accounting reports listing nuclear material inventories, receipts and shipments; - documents amplifying and clarifying reports, as applicable; - notification of international transfers of nuclear material. (b) Collection by the IAEA of information through inspection activities such as - verification of design information - examination of records and repo ts - measurement of nuclear material - examination of containment and surveillance measures - follow-up activities in case of unusual findings. (c) Evaluation of the information provided by the State and of that collected by inspectors to determine the completeness, accuracy and validity of the information provided by the State and to resolve any anomalies and discrepancies. To design an effective verification system, one must identify possible ways and means by which nuclear material could be diverted from peaceful uses, including means to conceal such diversions. These theoretical ways and means, which have become known as diversion strategies, are used as one of the basic inputs for the development of safeguards procedures, equipment and instrumentation. For analysis of implementation strategy purposes, it is assumed that non-compliance cannot be excluded a priori and that consequently there is a low but non-zero probability that a diversion could be attempted in all safeguards ituations. An important element of diversion strategies is the identification of various possible diversion paths; the amount, type and location of nuclear material involved, the physical route and conversion of the material that may take place, rate of removal and concealment methods, as appropriate. With regard to the physical route and conversion of nuclear material the following main categories may be considered: - unreported removal of nuclear material from an installation or during transit - unreported introduction of nuclear material into an installation - unreported transfer of nuclear material from one material balance area to another - unreported production of nuclear material, e. g. enrichment of uranium or production of plutonium - undeclared uses of the material within the installation. With respect to the amount of nuclear material that might be diverted in a given time (the diversion rate), the continuum between the following two limiting cases is cons dered: - one significant quantity or more in a short time, often known as abrupt diversion; and - one significant quantity or more per year, for example, by accumulation of smaller amounts each time to add up to a significant quantity over a period of one year, often called protracted diversion. Concealment methods may include: - restriction of access of inspectors - falsification of records, reports and other material balance areas - replacement of nuclear material, e. g. use of dummy objects - falsification of measurements or of their evaluation - interference with IAEA installed equipment.As a result of diversion and its concealment or other actions, anomalies will occur. All reasonable diversion routes, scenarios/strategies and concealment methods have to be taken into account in designing safeguards implementation strategies so as to provide sufficient opportunities for the IAEA to observe such anomalies. The safeguards approach for each facility will make a different use of these procedures, equipment and instrumentation according to the various diversion strategies which could be applicable to that facility and according to the detection and inspection goals which are applied. Postulated pathways sets of scenarios comprise those elements of diversion strategies which might be carried out at a facility or across a State's fuel cycle with declared or undeclared activities. All such factors, however, contain a degree of fuzziness that need a human judgment to make the ultimate conclusion that all material is being used for peaceful purposes. Safeguards has been traditionally based on verification of declared material and facilities using material accountancy as a fundamental measure. The strength of material accountancy is based on the fact that it allows to detect any diversion independent of the diversion route taken. Material accountancy detects a diversion after it actually happened and thus is powerless to physically prevent it and can only deter by the risk of early detection any contemplation by State authorities to carry out a diversion. Recently the IAEA has been faced with new challenges. To deal with these, various measures are being reconsidered to strengthen the safeguards system such as enhanced assessment of the completeness of the State's initial declaration of nuclear material and installations under its jurisdiction enhanced monitoring and analysis of open information and analysis of open information that may indicate inconsistencies with the State's safeguards obligations. Precise information vital for such enhanced assessments and analyses is normally not available or, if available, difficult and expensive collection of information would be necessary. Above all, realistic appraisal of truth needs sound human judgment.

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