• 제목/요약/키워드: Distributed energy resources

검색결과 211건 처리시간 0.027초

MMOG User Participation Based Decentralized Consensus Scheme and Proof of Participation Analysis on the Bryllite Blockchain System

  • Yun, Jusik;Goh, Yunyeong;Chung, Jong-Moon;Kim, OkSeok;Shin, SangWoo;Choi, Jin;Kim, Yoora
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제13권8호
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    • pp.4093-4107
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    • 2019
  • Proof of Work (PoW) based blockchains have limitations in throughput, time consumption, and energy efficiency. In these systems, a miner will consume significant time and resources to obtain a reward for contributing to the blockchain. To overcome these limitations, recent research on blockchains are focused on accelerating the speed, scalability, and enhancing the security level. By enhancing specific procedures of blockchain system, the level of data integrity supported by the blockchain can become more robust, and efficient. In this paper, a new blockchain consensus model based on the Bryllite Consensus Protocol (BCP) is proposed to support a hyper-connected massively multiplayer online game (MMOG) ecosystem. The BCP scheme enables users to participate directly in new consensus processes through a Proof of Participation (PoP) algorithm. In this model, the consensus algorithm has a simpler form while maintaining high security level. In addition, because the BCP scheme gives users an equal chance to make a contribution to the blockchain, rewards are distributed in an equal fashion, which motivates user participation. The analysis of the proposed scheme is applied to the Bryllite consortium blockchain system (homed in Hong Kong), which is a new blockchain network developed for international game industries, gamers, and game events.

A Danger Theory Inspired Protection Approach for Hierarchical Wireless Sensor Networks

  • Xiao, Xin;Zhang, Ruirui
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제13권5호
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    • pp.2732-2753
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    • 2019
  • With the application of wireless sensor networks in the fields of ecological observation, defense military, architecture and urban management etc., the security problem is becoming more and more serious. Characteristics and constraint conditions of wireless sensor networks such as computing power, storage space and battery have brought huge challenges to protection research. Inspired by the danger theory in biological immune system, this paper proposes an intrusion detection model for wireless sensor networks. The model abstracts expressions of antigens and antibodies in wireless sensor networks, defines meanings and functions of danger signals and danger areas, and expounds the process of intrusion detection based on the danger theory. The model realizes the distributed deployment, and there is no need to arrange an instance at each sensor node. In addition, sensor nodes trigger danger signals according to their own environmental information, and do not need to communicate with other nodes, which saves resources. When danger is perceived, the model acquires the global knowledge through node cooperation, and can perform more accurate real-time intrusion detection. In this paper, the performance of the model is analyzed including complexity and efficiency, and experimental results show that the model has good detection performance and reduces energy consumption.

Evaluating the effects of the inclinations of rock blocks on the stability of bimrock slopes

  • Khorasani, Emad;Amini, Mehdi;Hossaini, Mohammad Farouq;Medley, Edmund
    • Geomechanics and Engineering
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    • 제17권3호
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    • pp.279-285
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    • 2019
  • The process of slope stability analysis is one of the most important stages in design of some civil and mining projects. Bimslopes are made from bimrocks (block-in-matrix rocks) where rocky blocks are distributed in a bonded matrix of finer texture. These kind of slopes are often seen in weathered and near-surface depths. Previous studies have shown that VBP (Volumetric Block Proportion) is one of the most significant factors affecting bimrocks strength and consequently the stability of bimslopes. In this paper, the influence of block inclinations on bimslope stability have been investigated. For this purpose, 180 theoretical models have been made with various VBPs, all of them have a specified block size distribution. These bimslopes contain blocks with differing dips relative the slope inclination. Also for each kind of block inclination, 10 different blocks arrangements have been modeled. The Finite Element Method (FEM) was used to analysis the stability of these bimslopes models. The results showed the inclination of blocks has a strong impact on the Safety Factor and stability of bimslopes. When the difference in angle of dip of blocks relative to the slope angle is maximum, the Safety Factor of bimslopes tends to be a maximum compared with the matrix-only state. Furthermore, with increasing VBP of bimslopes stability increases. The graphs obtained from this study could be used for preliminary guidance in the projects design with bimslopes.

Development of the High Input Voltage Self-Power for LVDC

  • Kim, Kuk-Hyeon;Kim, Soo-Yeon;Choi, Eun-Kyung;HwangBo, Chan;Park, Seong-Mi;Park, Sung-Jun
    • 한국산업융합학회 논문집
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    • 제24권4_1호
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    • pp.387-395
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    • 2021
  • Distributed resources such as renewable energy sources and ESS are connected to the low voltage direct current(LVDC) distribution network through the power conversion system(PCS). Control power is required for the operation of the PCS. In general, controller power is supplied from AC power or DC power through switch mode power supply(SMPS). However, the conventional SMPS has a low input voltage, so development and research on high input voltage self-power suitable for LVDC is insufficient. In this paper, to develop Self-Power that can be used for LVDC, the characteristics of the conventional topology are analyzed, and a series-input single-output flyback converter using a flux-sharing transformer for high voltage is designed. The high input voltage Self-Power was designed in the DCM(discontinuous current mode) to reduce the switching loss and solve the problem of current dissipation. In addition, since it operates even at low input voltage, it can be applied to many applications as well as LVDC. The validity of the proposed high input voltage self-power is verified through experiments.

슈퍼컴퓨팅환경에서의 대규모 계산 작업 처리 기술 연구 (HTCaaS(High Throughput Computing as a Service) in Supercomputing Environment)

  • 김석규;김직수;김상완;노승우;김서영;황순욱
    • 한국콘텐츠학회논문지
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    • 제14권5호
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    • pp.8-17
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    • 2014
  • 슈퍼컴퓨팅 자원들은 주로 MPI와 같은 메시지 교환 인터페이스에 기반한 통신 집적도가 높은 고성능 컴퓨팅(HPC: High Performance Computing) 응용 분야를 지원하는데 활용되어 왔다. 반면에, 대규모 계산처리 컴퓨팅(HTC: High Throughput Computing) 방식의 패러다임은 주로 계산 집적도가 높고(상대적으로 적은 I/O 연산), 독립적인(작업들 간의 통신이 적음) 많은 수의 작업을 처리하는 것을 요구하고 있다. 국내에서도 고에너지 물리, 신약개발, 핵물리와 같은 연구 분야를 중심으로 대규모 컴퓨팅 자원을 요구하는 계산처리에 대한 수요가 증가하고 있다. 본 논문에서는 이러한 HTC 과학 응용들에 대한 효율적인 지원을 국가차원의 슈퍼컴퓨팅 분산 환경에서 제공하기 위해 연구/개발되어진 대규모 계산처리 서비스(HTCaaS: High Throughput Computing as a Service)의 전체 구조 및 구성 요소, 실행 시나리오 및 실제 응용 적용 사례 등에 대해 서술한다.

분포형 수문모형을 이용한 행정중심복합도시 개발 전후 물순환 변화 해석 (Analysis of Water Cycle Changes in the Multi-functional Administrative City using a Distributed Hydrologic model)

  • 노성진;김현준;장철희;이용준
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.1275-1279
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    • 2008
  • 도시지역은 도시형 수해발생, 갈수시의 급수안전도 저하, 평시 하천유량의 감소, 공공수역의 수질악화, 지하수 오염 등 여러가지 문제에 직면하고 있다. 개발로 인한 수환경의 피해를 최소화하기 위한 대안적인 설계방안이 필요하며, 이를 위해서는 개발 전후 물순환 환경 변화에 대한 정량적인 해석이 가장 우선적으로 수행되어야 한다. 본 연구에서는 우리나라와 일본에서 도시유역에의 적용이 활발한 물리적 개념의 분포형 수문모형인 WEP(Water and Energy transfer Process) 모형을 통해 행정중심복합도시 개발 전후의 물순환 변화를 해석하였다. 정밀한 해석을 위해 대상유역을 100m 크기의 정방형 격자로 구분하고 기상 조건, 지표면 조건, 하천, 토양, 지하대수층, 농업용수 이용 등 물순환에 관련된 광범위한 입력자료는 기존 측정 자료 및 관련 문헌, 현장 조사를 통해 각각 구축하였다. 모의의 전 후처리는 WEP+를 통해 수행되었는데, WEP+는 WEP 모형의 방대한 양의 입력자료를 효과적으로 구축하고, 다양한 시계열 및 공간분포 출력자료를 효과적으로 분석할 수 있는 인터페이스를 지닌 전 후처리 프로그램이다. 개발로 인한 물순환 변화는 절성토로 인한 지형 및 토양 조건 변화, 토지이용 및 용수이용 변화에 대한 개발 계획을 모형 입력자료로 구축한 후, 개발전과 동일한 기상조건과 초기 모의조건 하에서 각각 11년간 모의하여 수문 요소 변화를 비교하는 방법을 사용하였다. 물순환 해석 결과는 개발 전후 모의에 대해 유황곡선 및 물수지, 수문요소 공간분포 비교를 통해 수행하였다.

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Comparison of soil erosion simulation between empirical and physics-based models

  • Yeon, Min Ho;Kim, Seong Won;Jung, Sung Ho;Lee, Gi Ha
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2020년도 학술발표회
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    • pp.172-172
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    • 2020
  • In recent years, soil erosion has come to be regarded as an essential environmental problem in human life. Soil erosion causes various on- and off-site problems such as ecosystem destruction, decreased agricultural productivity, increased riverbed deposition, and deterioration of water quality in streams. To solve these problems caused by soil erosion, it is necessary to quantify where, when, how much soil erosion occurs. Empirical erosion models such as the Universal Soil Loss Equation (USLE) family models have been widely used to make spatially distributed soil erosion vulnerability maps. Even if the models detect vulnerable sites relatively well by utilizing big data related to climate, geography, geology, land use, etc. within study domains, they do not adequately describe the physical process of soil erosion on the ground surface caused by rainfall or overland flow. In other words, such models remain powerful tools to distinguish erosion-prone areas at the macro scale but physics-based models are necessary to better analyze soil erosion and deposition and eroded particle transport. In this study, the physics-based Surface Soil Erosion Model (SSEM) was upgraded based on field survey information to produce sediment yield at the watershed scale. The modified model (hereafter MoSE) adopted new algorithms on rainfall kinematic energy and surface flow transport capacity to simulate soil erosion more reliably. For model validation, we applied the model to the Doam dam watershed in Gangwon-do and compared the simulation results with the USLE outputs. The results showed that the revised physics-based soil erosion model provided more improved and reliable simulation results than the USLE in terms of the spatial distribution of soil erosion and deposition.

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향료자원 조성을 위한 순비기나무의 증식에 관한 연구 (Study on the Propagation of Vitex rotundifolia for Establishment of Natural Aromatic Resources)

  • 김계환;박종민
    • 임산에너지
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    • 제23권1호
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    • pp.26-37
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    • 2004
  • 순비기나무를 향료자원으로 활용하기 위한 일련의 연구 가운데, 종자와 삽목을 이용한 증식방법에 대해 시험하였던 바, 다음과 같은 결과를 얻었다. 종자번식에서 상온저장한 종실의 발아율이 67%로 가장 좋았다. 종실 1개당 발생한 묘목의 수는 1개 발아한 종실이 40.3%로 가장 많았고, 종실당 평균 묘목 수는 1.4개였다. 삽목번식의 경우 숙지삽목과 녹지삽목에서 모두 콤포스트+모래삽상토, IBA 2500ppm에서 삽수의 발근율이 96.7%로 가장 좋았다. 전반적으로 순비기나무의 삽목번식 조건으로는 2500ppm 이상의 고농도에서 짧은 시간동안 침지한 것이 200ppm 이하의 저농도에서 장시간 침지한 것보다 좋으며, 삽상토양으로는 모래와 콤포스트를 혼합한 것이 좋은 것으로 나타났다. 또한, 녹지삽목이 숙지삽목보다 10% 정도 발근이 양호하였다.

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저온 증착된 불소도핑 주석 산화 박막의 광학적·전기적 특성 (Optical and Electrical Properties of Fluorine-Doped Tin Oxide Prepared by Chemical Vapor Deposition at Low Temperature)

  • 박지훈;전법주
    • 한국재료학회지
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    • 제23권9호
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    • pp.517-524
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    • 2013
  • The electrical and optical properties of fluorine-doped tin oxide films grown on polyethylene terephthalate film with a hardness of 3 using electron cyclotron resonance plasma with linear microwave of 2.45 GHz of high ionization energy were investigated. Fluorine-doped tin oxide films with a magnetic field of 875 Gauss and the highest resistance uniformity were obtained. In particular, the magnetic field could be controlled by varying the distribution in electron cyclotron deposition positions. The films were deposited at various gas flow rates of hydrogen and carrier gas of an organometallic source. The surface morphology, electrical resistivity, transmittance, and color in the visible range of the deposited film were examined using SEM, a four-point probe instrument, and a spectrophotometer. The electromagnetic field for electron cyclotron resonance condition was uniformly formed in at a position 16 cm from the center along the Z-axis. The plasma spatial distribution of magnetic current on the roll substrate surface in the film was considerably affected by the electron cyclotron systems. The relative resistance uniformity of electrical properties was obtained in film prepared with a magnetic field in the current range of 180~200A. SEM images showing the surface morphologies of a film deposited on PET with a width of 50 cm revealed that the grains were uniformly distributed with sizes in the range of 2~7 nm. In our experimental range, the electrical resistivity of film was able to observe from $1.0{\times}10^{-2}$ to $1.0{\times}10^{-1}{\Omega}cm$ where optical transmittance at 550 nm was 87~89 %. These properties were depended on the flow rate of the gas, hydrogen and carrier gas of the organometallic source, respectively.

3상 시스템의 무효전력, 불평형 전류 보상 기능을 갖는 태양광 전력변환장치 설계 (Design of a Photovoltaic PCS with Compensation Control of Reactive Power and Unbalance Current in Three-phase systems)

  • 박상민;김창순;레딘브엉;박민원;유인근
    • 한국산업정보학회논문지
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    • 제21권3호
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    • pp.29-33
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    • 2016
  • 청정에너지 발전설비의 요구가 늘면서 태양광, 풍력, 연료 전지 등의 분산전원 개발이 급속도로 증가하고 있다. 반면에 이러한 증가로 인하여 배전시스템은 복잡해지고 있으며 무효전력으로 인한 역률 저감, 불평형 부하에 의한 불평형 전류 등의 문제점을 가지고 있다. 이러한 문제점들을 해결하기 위하여 본 논문에서는 태양광용 3상 4선 타입의 전력변환장치에 무효전력, 불평형 전류를 보상하는 알고리즘을 적용하였다. 제안한 태양광 전력변환장치는 기본 출력동작 뿐만 아니라 계통 전력 품질의 저해요소들에 대해서 보상이 가능하며 PSCAD/EMTDC를 이용한 시뮬레이션을 통하여 그 성능을 검증하였다.