• Title/Summary/Keyword: Demand-side management

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Development of Optimal Reservoir System Operation Model for Water Supply by Applying MIP Technique and Reappraisal of Water Supply Capability of Nakdong River Basin (MIP에 의한 댐군연계운영 최적화모형 개발과 개발 모형에 의한 낙동강수계 용수공급능력 재평가)

  • Choe, Yeong-Song;An, Gyeong-Su;Park, Myeong-Gi
    • Journal of Korea Water Resources Association
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    • v.33 no.4
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    • pp.447-459
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    • 2000
  • Since the development of water resources is getting more difficult than ever before because of human-sociological condition, it would be necessary to develop a practically applicable technique for the management of water resources based on demand-side concept that could reduce unusable release for more effective and appropriate allocation of limited water resources. The objective of the study is to develop an optimal reservoir system operation model for water supply and energy augmentation by the combination of water budget analysis method in downstream area by MIP technique. The applicable study of the developed model was carried out and water supply capability of Nakdong river basin was re-evaluated by the developed model. The model has been found successful to guarantee appropriate water supply to the basin by means of deficit-supply management method and also turned out to be more practical tool for an optimal reservoir system operation model than other existing models.

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A Study on User Preference for Smart City Non-face-to-face Services: Focusing on the Cases of Sejong City and Busan City (스마트시티 비대면 서비스에 대한 이용자 선호도 연구: 세종시와 부산시 사례를 중심으로)

  • Yechan Kim;Heetae Yang
    • Information Systems Review
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    • v.23 no.4
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    • pp.87-102
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    • 2021
  • Smart cities are attracting attention as a new economic growth engine based on new technologies and means to solve side effects of urbanization such as a surge in energy consumption, deepening environmental pollution, and an increase in crime rates. In particular, as demand for non-face-to-face services increases due to COVID-19, the role of smart cities that can provide various online and offline non-face-to-face services is becoming more important. Therefore, this study defined smart city non-face-to-face services based on literature research on the concept and underlying technology of smart city, and analyzed consumer utility for each service using Conjoint analysis. In particular, differences in user preferences between Sejong City and Busan City, which are currently designated as national smart city pilot cities in Korea, were compared and analyzed, and based on the derived results, measures to improve the competitiveness of smart city services were suggested.

Determination of Incentive Level of Direct Load Control Program Based on California lest (캘리포니아 테스트에 기초한 직접부하제어 프로그램의 적정 인센티브 산정)

  • 박종배;김민수;신중린;전영환
    • Journal of Energy Engineering
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    • v.11 no.4
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    • pp.342-349
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    • 2002
  • This paper presents the determination of incentive level of Direct Load Control (DLC) program based on California Test. In the most of the Demand-Side Management (DSM) program, the variables art given by constant value during the DSM program's life time. But, in the case of DLC, variables are depen-dent on the executing number and time of the DLC per year. Therefore, we formulate a newly designed Cal-ifornia Test technique to overcome these problems and to apply effectively to the determination of incentive level of the DLC program. We perform case studies for various scenarios using a proposed formulation and review incentive level of the current DLC program. And we propose a plan to activate the DLC program in the competitive electricity market.

Energy Cost Saving Control of Water Reuse Pumping System Using Particle Swarm Optimization (PSO를 이용한 물 재이용 펌프시스템의 에너지 비용 제어)

  • Boo, Chang-Jin;Kim, Ho-Chan;Kang, Min-Jae
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.1
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    • pp.860-867
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    • 2015
  • This paper presents a control method for energy cost saving in the water reuse pumping system. An optimize horizon switching strategy is proposed to implement an pump control. And Particle Swarm Optimization (PSO) algorithm is used to solve optimal problems in each time step. Energy costs are calculated for electricity on both TOU in the light, heavy, and maximum load time period and peak charges. The control method in water reuse pumping systems is determined to reduce the TOU cost. The simulation results show a energy cost saving for water reuse pumping systems.

An Implementation of a Current Controlled Inverter for Improved quality of the Grid (계통의 품질개선을 위한 전류제어형 인버터의 구현)

  • Lee S. S.;Jeon C. H.;Ko S. S.;Shin Y. C.
    • Proceedings of the KIPE Conference
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    • 2004.07b
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    • pp.515-518
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    • 2004
  • Increasing of the nonlinear power electronics equipments, power conditioning systems have been researched and developed for many years to compensate the harmonic disturbances and the reactive power. The main function of power conditioning systems is to reduce harmonic distortions, since extensive surveys quantify the problems associated with electric networks having non-linear loads. The main function of power conditioner compensates the current instead of the voltage. Therefore the inverter used in power conditioner is mostly the current controlled type. In this paper, we propose the power conditioner using photovoltaic system, which is operated by the PRT(Polarized Ramp Time) current control algorithm. The proposed system could also achieve Demand Side Management's function and Uninterruptible Power Supply's function simultaneously. To verify the proposed current controlled inverter for improved quality of the grid, the detail simulation and experiment results indicate that operation PCS, DSM and UPS can be achieved.

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A Study on the Planning of Urban Energy Supply Systems Including Co-generation System (도시지역 에너지 공급체계 개선방안 검토 연구)

  • Woo, Nam-Sub;Lee, Tae-Won;Kim, Yong-Ki
    • Proceedings of the SAREK Conference
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    • 2009.06a
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    • pp.177-182
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    • 2009
  • The purpose of this study is to investigate planning of urban energy supply systems configuration and operating conditions for the district heating and cooling system using combined heat and power system. Generally the district heating and cooling system has been known to one of the effective way for energy saving, cost reduction and demand side management of energy. Economical analyses were carried out and operating characteristics for some systems were examined in terms of GER factor which represents to the ratio of gas and electricity costs. Rates of the energy consumption and the $CO_2$ emission were compared from the system configuration of the energy supply system with new district cooling system with the conventional one.

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Power Control and Dynamic Performance Analysis of a Grid-Interactive Wind/PV/BESS Hybrid System (계통연계형 풍력, 태양광 및 축전지 하이브리드 시스템의 출력제어 및 동특성 해석)

  • Kim, Seul-Ki;Jeon, Jin-Hong;Cho, Chang-Hee;Ahn, Jong-Bo
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.56 no.2
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    • pp.317-324
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    • 2007
  • Most conventional hybrid systems using renewable energy sources have been applied for stand-alone operation, but Utility-interface may be an useful and viable option for hybrid systems. Grid-connected operation may have benefits such as reduced losses in power system distribution, utility support in demand side management, and peak load shaving. This paper addresses power control and dynamic performance of a grid-connected PV/wind/BESS hybrid system. At all times the PV way and the wind turbine are individually controlled to generate the maximum energy from given weather conditions. The battery energy storage system (BESS) charges or discharges the battery depending on energy gap between grid invertger generation and production from the PV and wind system. The BESS should be also controlled without too frequently repeated shifts in operation mode, charging or discharging. The grid inverter regulates the generated power injection into the grid. Different control schemes of the grid inverter are presented for different operation modes, which include normal operation, power dispatching, and power smoothing. Simulation results demonstrate that the effectiveness of the proposed power control schemes for the grid-interactive hybrid system.

Optimal Operation Control for Energy Saving in Water Reuse Pumping System (에너지절감을 위한 물 재이용 펌프시스템의 최적운전 제어)

  • Boo, Chang-Jin;Kim, Ho-Chan
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.5
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    • pp.2414-2419
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    • 2012
  • This paper presents an optimal operation control method for energy saving in the water reuse pumping system. A predictive horizon switching strategy is proposed to implement an optimal operation control and a linear programming (LP) algorithm is used to solve optimal problems in each time step. Energy costs are calculated for electricity on both TOU in the light, heavy, and maximum load time period and peak charges. The optimal operation in water reuse pumping systems is determined to reduce the TOU and peak costs. The simulation results show a power energy saving for water reuse pumping systems and power stability improvement.

Analysis on the Power System Reliability Characteristics according to the High-Efficient End-Use Diffusion (고효율기기의 보급확산에 따른 전력시스템 공급신뢰도의 영향분석)

  • Chang, Seung-Chan;Hwang, Sung-Wook;Cho, Hyoung-Joon;Kim, Jung-Hoon;Kim, Bal-Ho
    • Proceedings of the KIEE Conference
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    • 1998.11a
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    • pp.239-241
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    • 1998
  • The probabilistic production simulation of power system generally has been used to formulate a reasonable power production plan or generation planning. It integrates the convolution process of a generating unit's random outage(FOR) with equivalent load duration curve(ELDC), and provides the reliability indices of power system. This paper presents the reliability characteristics of power system reflected on demand side management and proposes the modified ELDC representation technique due to the high-efficient end-use diffusion among the customers. Load reductions are simulated from the multi-state deconvolution process with the saved capacity of end-use. Case study shows the computed reliability from the power system production simulation incorporated with DSM planning scheme.

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An integrated review on new targets in the treatment of neuropathic pain

  • Khangura, Ravneet Kaur;Sharma, Jasmine;Bali, Anjana;Singh, Nirmal;Jaggi, Amteshwar Singh
    • The Korean Journal of Physiology and Pharmacology
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    • v.23 no.1
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    • pp.1-20
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    • 2019
  • Neuropathic pain is a complex chronic pain state caused by the dysfunction of somatosensory nervous system, and it affects the millions of people worldwide. At present, there are very few medical treatments available for neuropathic pain management and the intolerable side effects of medications may further worsen the symptoms. Despite the presence of profound knowledge that delineates the pathophysiology and mechanisms leading to neuropathic pain, the unmet clinical needs demand more research in this field that would ultimately assist to ameliorate the pain conditions. Efforts are being made globally to explore and understand the basic molecular mechanisms responsible for somatosensory dysfunction in preclinical pain models. The present review highlights some of the novel molecular targets like D-amino acid oxidase, endoplasmic reticulum stress receptors, sigma receptors, hyperpolarization-activated cyclic nucleotide-gated cation channels, histone deacetylase, $Wnt/{\beta}-catenin$ and Wnt/Ryk, ephrins and Eph receptor tyrosine kinase, Cdh-1 and mitochondrial ATPase that are implicated in the induction of neuropathic pain. Studies conducted on the different animal models and observed results have been summarized with an aim to facilitate the efforts made in the drug discovery. The diligent analysis and exploitation of these targets may help in the identification of some promising therapies that can better manage neuropathic pain and improve the health of patients.