• 제목/요약/키워드: Grid Charging

검색결과 159건 처리시간 0.031초

장입물 층상구조에 따른 고로내 운전상황 변화 연구 (A Study on Operation Condition of Blast Furnace According to Burden Distribution)

  • 양광혁;최상민;정진경
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2006년도 제33회 KOSCO SYMPOSIUM 논문집
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    • pp.145-150
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    • 2006
  • At the furnace top, the distribution of charging coke and ore is adjusted to control the reducing gas flow distribution in the furnace. It is necessary to predict operation condition of blast furnace according to the burden profile to judge whether charging is properly conducted In this study, We propose the model for predicting while layer structures whithin furnace when top burden profile was given. Layer structure of coke and ore could be predicted by top burden profile and solid velocity. Solid velocity is assumed as potential flow. Potential function distribution and timeline are also calculated using solid velocity field. The Calculation is conducted for different burden profile cases. As the result burden distribution and grid structure, which is deformed to match the layer structure in shaft and deadman profile. Gas flow was calculated using this grid, and calculated results are compared with each other.

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전기버스용 100kW급 충전인프라 개발 (Development of a 100kW charging infra for electrical bus)

  • 이충우;오승훈;이윤재;최은식;강병관;류강열;김희중
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2013년도 추계학술대회 논문집
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    • pp.117-118
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    • 2013
  • Recent global warming to the promotion of electric vehicles (EV), plug-in hybrid (PEV), including the next generation of cars and solar power, wind power and other renewable energy, and next-generation power grid (smart grid) are getting attention. In addition, the system utilizes the battery life in the industry and the convenience of a variety of social systems, economics, environmental impact, and the inherent potential to change significantly, and you can not walk into a next-generation industrial strategy and the need increases more and more present, and its early commercialization In order to do this, as well as a key energy source, the battery charger for charging efficiency technologies is essential. In this paper, fast charge multiple battery modules and optional modules that can charge distribution charge will be introduced.

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Stochastic Integrated Generation and Transmission Planning Incorporating Electric Vehicle Deployment

  • Moon, Guk-Hyun;Kong, Seong-Bae;Joo, Sung-Kwan;Ryu, Heon-Su;Kim, Tae-Hoon
    • Journal of Electrical Engineering and Technology
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    • 제8권1호
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    • pp.1-10
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    • 2013
  • The power industry is currently facing many challenges, due to the new environment created by the introduction of smart grid technologies. In particular, the large-scale deployment of electric vehicles (EVs) may have a significant impact on demand for electricity and, thereby, influence generation and transmission system planning. However, it is difficult to deal with uncertainties in EV charging loads using deterministic planning methods. This paper presents a two-stage stochastic decomposition method with Latin-hyper rectangle sampling (LHRS) to solve the integrated generation and transmission planning problem incorporating EV deployment. The probabilistic distribution of EV charging loads is estimated by Latin-hyper rectangle sampling (LHRS) to enhance the computational performance of the proposed method. Numerical results are presented to show the effectiveness of the proposed method.

에너지 저장장치의 계통 연계형 양방향 PCS 기술 (The grid-connected bidirectional PCS technology of the ESS)

  • 고봉운
    • 전기전자학회논문지
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    • 제23권4호
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    • pp.1280-1287
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    • 2019
  • 계통 연계 형 양방향 PCS 기술은 분산 형 신재생 에너지 스마트 그리드를 구현하기 위한 기술이며, 방대한 스마트 그리드 시스템 중 태양광 모듈로부터 수집된 전력 및 상용 계통전원을 이용하여 상시 전력을 충전하였다가 필요시 저장된 전력을 저압 계통 측으로 방출할 수 있도록 하는 하이브리드형 에너지 저장 장치이다. 이를 위해 MPPT 기능이 포함된 PV입력 전력변환기와 배터리 충·방전을 위한 양방향 전력변환기 및 DC Link 전압을 3상 380V AC 계통으로 출력하고 필요할 경우 계통전력을 AC/DC변환하여 양방향 DC/DC컨버터를 통해 배터리로 충전기능을 수행하는 인버터로 구성된 3개의 전력변환기 구조를 갖는 PCS를 설계 및 개발하였다. 현재 이 시스템을 정전 및 화재사고에 취약한 제주의 사이트에 적용하여 실증 및 운영하고 있다.

Power Factor Improvement of Distribution System with EV Chargers based on SMC Method for SVC

  • Farkoush, Saeid Gholami;Kim, Chang-Hwan;Jung, Ho-Chul;Lee, Sanghyuk;Theera-Umpon, Nipon;Rhee, Sang-Bong
    • Journal of Electrical Engineering and Technology
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    • 제12권4호
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    • pp.1340-1347
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    • 2017
  • Utilization of Electric Vehicles (EVs) have been growing popularity in recent years due to increment in fuel price and lack of natural resources. Random unexpected charging by home EV charger in distribution is predicted in the future. The power quality problems such as fluctuation of power factor in a residential distribution network was explored with random EV chargers. This paper proposes a high-performance nonlinear sliding mode controller (SMC) for an EV charging system to compensate voltage distortions and to enhance the power factor against the unbalanced EV chargers. For the verification of the proposed scheme, MATLAB-Simulink simulations are performed on 22.9-kV grid. The results show that the proposed scheme can improve the power factor of a smart grid due to the EV chargers on the grid.

수용가 수요관리용 전지전력저장시스템의 최적용량 산정방법 (Optimal Capacity Determination Method of Battery Energy Storage System for Demand Management of Electricity Customer)

  • 조경희;김슬기;김응상
    • 전기학회논문지
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    • 제62권1호
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    • pp.21-28
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    • 2013
  • The paper proposes an optimal sizing method of a customer's battery energy storage system (BESS) which aims at managing the electricity demand of the customer to minimize electricity cost under the time of use(TOU) pricing. Peak load limit of the customer and charging and discharging schedules of the BESS are optimized on annual basis to minimize annual electricity cost, which consists of peak load related basic cost and actual usage cost. The optimal scheduling is used to assess the maximum cost savings for all sets of candidate capacities of BESS. An optimal size of BESS is determined from the cost saving curves via capacity of BESS. Case study uses real data from an apartment-type factory customer and shows how the proposed method can be employed to optimally design the size of BESS for customer demand management.

11kW 5.58kW/L 무(無)전해커패시터 단상/3상 겸용 전기자동차 탑재형 충전기 (A 11 kW 5.58 kW/L Electrolytic Capacitor-less EV Charger With Single- and Three-Phase Compatibility)

  • 김형진;박준영;김선주;라마단;기에우 흐우 푹;최세완
    • 전력전자학회논문지
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    • 제26권4호
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    • pp.277-284
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    • 2021
  • A single and three phase-compatible single-stage EV charger without electrolytic capacitor is proposed in this study. DC battery-charging current is inherently guaranteed in the three-phase grid due to three output currents with a phase shift of 120° between each other. The proposed EV charger can provide a DC battery charging current for the single-phase grid through the integrated active power decoupling circuit without using additional switches. The proposed EV charger ensures ZVS turn-on of all switches with wide grid and battery voltage ranges. The 11 kW prototype of the proposed EV charger demonstrates a peak efficiency of 97.01% and a power density of 5.58 kW/L.

위협모델링을 이용한 전기차 충전 인프라의 보안요구사항에 대한 연구 (A Study on Security Requirements of Electric Vehicle Charging Infrastructure Using Threat Modeling)

  • 차예슬;김승주
    • 정보보호학회논문지
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    • 제27권6호
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    • pp.1441-1455
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    • 2017
  • 전기차 충전 인프라에서는 충전 및 결제 데이터를 포함하여 다양한 데이터가 전송되기 때문에 안전한 전기차 충전 인프라를 구축하기 위해서는 이에 대한 보안 연구가 요구된다. 그렇지만 기존에 진행된 연구들은 전기차 충전을 위한 충전 인프라 보다는 전력 계통 인프라와 같은 스마트 그리드 관련 보안 연구가 주를 이루고 있다. 또한 충전 인프라 관련 연구는 아직 부족한 현실이며, 위협모델링과 같은 체계적인 방법론을 이용한 연구는 아직 진행되고 있지 않다. 따라서 안전한 전기차 충전 인프라의 구축을 위해 위협모델링을 적용하여 보안 위협을 식별하고 보안요구사항을 체계적으로 분석하는 것이 필요하다. 본 논문에서는 Data Flow Diagram, STRIDE, Attack Tree를 활용한 위협모델링을 이용하여 충전 인프라에서 발생 가능한 위협을 정확히 식별하고 객관적인 보안요구사항을 도출하여 전기차 충전 인프라를 분석한다.

변동성 재생e 유연 대응을 위한 한국형 V2G 기술개발 (Korean V2G Technology Development for Flexible Response to Variable Renewable Energy)

  • 손찬;유승덕;임유석;박기준
    • KEPCO Journal on Electric Power and Energy
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    • 제7권2호
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    • pp.329-333
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    • 2021
  • V2G (Vehicle to Grid) technology for an EV (Electric Vehicle) has been assumed as so promising in a near future for its useful energy resource concept but still yet to be developed around the world for specific service purposes through various R&BD projects. Basically, V2G returns power stored in vehicle at a cheaper or unused time to the grid at more expensive or highly peaked time, and is accordingly supposed to provide such roles like peak shaving or load levelling according to customer load curve, frequency regulation or ancillary reserves, and balancing power fluctuation to grid from the weather-sensitive renewable sources like wind or solar generations. However, it has recently been debated over its prominent usage as diffusing EVs and the required charging/discharging infrastructure, partially for its addition of EV ownership costs with more frequent charging/discharging events and user inconvenience with a relative long-time participation in the previously engaged V2G program. This study suggests that a Korean DR (Demand Response) service integrated V2G system especially based upon a dynamic charge/pause/discharge scheme newly proposed to ISO/IEC 15118 rev. 2 can deal with these concerns with more profitable business model, while fully making up for the additional component (ex. battery) and service costs. It also indicates that the optimum economic, environmental, and grid impacts can be simulated for this V2G-DR service particularly designed for EV aggregators (V2G service providers) by proposing a specific V2G engagement program for the mediated DR service providers and the distributed EV owners.

분산전원 투입을 고려한 배전망 이용요금 산정에 관한 연구 (Calculation of Distribution Network Charging for DG Embedded Distribution System)

  • 황석현;김문겸;박종근
    • 전기학회논문지
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    • 제61권4호
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    • pp.513-521
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    • 2012
  • With the advent of smart grid, distribution network charges have been one of keystones of ongoing deregulation and privatization in power industries. This paper proposes a new charging methodology to allocate the existing distribution network cost with an aim of reflecting the true cost and benefit of network customers, especially of distribution generator (DG). The proposed charging methodology separates distribution network costs due to the respective real and reactive power flows. The costs are then allocated to network users according to each charge for the actual line capacity used and available capacity. This distribution network charging model is able to provide the economic signals to reward network users who are contributing to better power factors, while penalizing customers who worsen power factors. The proposed method is shown on IEEE 37 bus system for distribution network, and then the results are validated through the comparison with the MW-Miles and MVA-Miles methods. The charges derived from the proposed method can provide appropriate incentives/penalties to network customers to behave in a manner leading to a better network condition.