• Title/Summary/Keyword: Total demand

Search Result 2,217, Processing Time 0.04 seconds

Designing Study on Techno-Economic Assessment of Solar Photovoltaic Mini-Grid Project in Nepal

  • Poudel, Prasis;Bae, Sang-Hyun;Jang, Bongseog
    • Journal of Integrative Natural Science
    • /
    • v.15 no.2
    • /
    • pp.89-97
    • /
    • 2022
  • This paper presents the comprehensive feasibility study of solar mini-grid project located in Bajhang District, Sudur Paschim Province, Nepal. The study has been conducted with the aim of developing a suitable size solar mini-grid system to meet electricity demand of proposed settlements of the village people. The study forecasts that the estimated average daily peak power consumption of load is about 20kW and average daily energy demand of load is about 100-150kWh/day in the base year 2022. The shared ratio of productive end uses is about 25% of the total power consumption and about 27% of the total energy demand, which will be used for small business/income generation activities and required 45kWp size solar power generation mini-grid system. The estimated project cost for the proposed 45kW solar mini-grid system technology, including 3 years of operation & maintenance, as well as power distribution network up to end user's premises is about 0.24 million USD. It is concluded that 45kWp photovoltaic mini-grid is feasible for the location.

Demand Response Based Optimal Microgrid Scheduling Problem Using A Multi-swarm Sine Cosine Algorithm

  • Chenye Qiu;Huixing Fang
    • KSII Transactions on Internet and Information Systems (TIIS)
    • /
    • v.18 no.8
    • /
    • pp.2157-2177
    • /
    • 2024
  • Demand response (DR) refers to the customers' active reaction with respect to the changes of market pricing or incentive policies. DR plays an important role in improving network reliability, minimizing operational cost and increasing end users' benefits. Hence, the integration of DR in the microgrid (MG) management is gaining increasing popularity nowadays. This paper proposes a day-ahead MG scheduling framework in conjunction with DR and investigates the impact of DR in optimizing load profile and reducing overall power generation costs. A linear responsive model considering time of use (TOU) price and incentive is developed to model the active reaction of customers' consumption behaviors. Thereafter, a novel multi-swarm sine cosine algorithm (MSCA) is proposed to optimize the total power generation costs in the framework. In the proposed MSCA, several sub-swarms search for better solutions simultaneously which is beneficial for improving the population diversity. A cooperative learning scheme is developed to realize knowledge dissemination in the population and a competitive substitution strategy is proposed to prevent local optima stagnation. The simulation results obtained by the proposed MSCA are compared with other meta-heuristic algorithms to show its effectiveness in reducing overall generation costs. The outcomes with and without DR suggest that the DR program can effectively reduce the total generation costs and improve the stability of the MG network.

An EOQ Model for Deteriorating Items with Linearly Increasing Demand

  • Kim, Dae-Hong
    • Journal of Korean Institute of Industrial Engineers
    • /
    • v.20 no.3
    • /
    • pp.117-124
    • /
    • 1994
  • In this paper an inventory model is presented for determining the ordering schedule in which the demand rate is changing linearly with time and the decay is assumed to be a constant rate of the on-hand inventory. An easy to use heuristic is developed to find the times and sizes of replenishments so as to keep the total of ordering, inventory carrying and deteriorating costs as low as possible. Solutions of the model to test problems show that our heuristic model outperforms other existing models in the literature without sacrificing the computational complexity. When there is no deterioration, the model developed is related to the corresponding model of nondeteriorating items.

  • PDF

Deciding Each Level Ordering Policy for deterministic demand in Mutilevel Distribution System (다단계 물류시스템에서 수요가 확정적으로 발생할 경우 각 단계별 발주정책 결정)

  • 김상직;송재승
    • Journal of Korean Society of Industrial and Systems Engineering
    • /
    • v.19 no.37
    • /
    • pp.111-115
    • /
    • 1996
  • This study is to decide each level ordering policy for deterministic demand in multilevel distribution system. The ordering policy is used the combinations of EOQ and LTC. The combinations of EOQ and LTC are 4 cases. Case 1 : Regional Warehouse∼EOQ, Central Warehouse∼EOQ. Case 2 : Regional Warehouse∼EOQ, Central Warehouse∼LTC. Case 3 : Regional Warehouse∼LTC, Central Warehouse∼EOQ. Case4 : Regional Warehouse∼LTC, Central Warehouse∼LTC. The criterion is to minimize total cost per year.

  • PDF

Railway logistics plan by analyzing origin & destination of possible mad goods by railway (철송가능 육송품목의 기종점 분석을 통한 철도물류 활성화방안)

  • Park, Eun-Kyung
    • Proceedings of the KSR Conference
    • /
    • 2009.05a
    • /
    • pp.1708-1727
    • /
    • 2009
  • Even though we usually analyze logistic market based on confined railway logistics, but this study would like to judge what is potential demand transferable to railway goods through accurate analysis of railway sharing rates by the analysis of origin and destination of each item in total freight transportation market. Accordingly, by analyzing each items transferable to railway, excluding items stuck to original market, this study wants to choose some major items which are expected to lasting demand and activate railway logistics plan by focusing on major items for marketing strategy.

  • PDF

An Analysis of the Demand for Social Education of Women of Songnam City (성남시 여성의 사회교육 요구 분석)

  • 이길순;이원영
    • Korean Journal of Rural Living Science
    • /
    • v.8 no.1
    • /
    • pp.45-55
    • /
    • 1997
  • This study aims to analyse the demand of people living in Songnam city for social education. The results of this study were intended to serve as basic material for the social education institution to work out policies for its development. Data, which reached a total of 435, were collected from parents of students, bank clerks, factory workers, and distribution workers, who were living in Choongwon, Sujeong, or Boondang ward of songnam City. The findings of the study were as follows. 1. About 85.7% of the respondents were applying for a social education program : However, given that 63.2% of the positive respondents presented conditional answers, adequate programs to meet their demand should be developed for turning it into effective demand. 2. Specialized vocational training Programs. family life Programs, health and hygienic education program, foreign language learning programs and hobby and leisure programs turned out to be favored. 3. Respondents showed a preference for active participation in the process of education including experiment and field work over remaining passive listeners to a lecture. As to the period of education, 1 to 2 months were most favored; two classes of about 2 hours per week, met on weekdays, were strongly recommended.

  • PDF

Power Sharing and Cost Optimization of Hybrid Renewable Energy System for Academic Research Building

  • Singh, Anand;Baredar, Prashant
    • Journal of Electrical Engineering and Technology
    • /
    • v.12 no.4
    • /
    • pp.1511-1518
    • /
    • 2017
  • Renewable energy hybrid systems look into the process of choosing the finest arrangement of components and their sizing with suitable operation approach to deliver effective, consistent and cost effective energy source. This paper presents hybrid renewable energy system (HRES) solar photovoltaic, downdraft biomass gasifier, and fuel cell based generation system. HRES electrical power to supply the electrical load demand of academic research building sited in $23^{\circ}12^{\prime}N$ latitude and $77^{\circ}24^{\prime}E$ longitude, India. Fuzzy logic programming discover the most effective capital and replacement value on components of HRES. The cause regarding fuzzy logic rule usage on HOMER pro (Hybrid optimization model for multiple energy resources) software program finds the optimum performance of HRES. HRES is designed as well as simulated to average energy demand 56.52 kWh/day with a peak energy demand 4.4 kW. The results shows the fuel cell and battery bank are the most significant modules of the HRES to meet load demand at late night and early morning hours. The total power generation of HRES is 23,794 kWh/year to the supply of the load demand is 20,631 kWh/year with 0% capacity shortage.

Demand Analysis for the Development of Basic-Level TRIZ Curriculum

  • Han, Jiyoung;Yoo, Seung-Hyun
    • Journal of Engineering Education Research
    • /
    • v.17 no.4
    • /
    • pp.7-14
    • /
    • 2014
  • This study was conducted for the purpose of developing a basic-level TRIZ curriculum to improve students' creativity and problemsolving abilities. Towards this end, literature review, field application study, and a survey on the demand for such curriculum were conducted, as the research methodologies. Specifically, literature review was performed on the TRIZ-related research trends and education trends, and the researchers, who had experience running a TRIZ education program for a few years, ran a basic-level TRIZ for 40 hours as part of the extra-curriculum of A University. An actual survey was also conducted to determine the demand for the development of a basic-level TRIZ curriculum. Of the total of 40 students who were subjected to the curriculum, 31 responded sincerely 1 to the survey. Based on the survey analysis results on the students' recognition of the TRIZ curriculum and of the TRIZ task performance, and on the contents and educational effects of TRIZ, basic guidelines for the development of a basic-level TRIZ curriculum were formulated. Reflecting the results of the survey on the demand for a basic-level TRIZ curriculum, such a curriculum was proposed based on 16-week-long, 3-credit lectures considering the curricula of other subjects in the university.

A Study on analyzing the Plan to save the Demand for Energy and introduce the Renewable Energy System in Innovation City (혁신도시의 에너지수요절감 및 신재생에너지도입계획 분석연구)

  • Kim, Ji-Yeon;Hong, Sung-Hee;Park, Hyo-Soon;Suh, Seung-Jik
    • Proceedings of the SAREK Conference
    • /
    • 2007.11a
    • /
    • pp.474-479
    • /
    • 2007
  • The innovation city, which meets the best innovation condition to cooperate with the public institution and the industry-university-researcher closely and the good environment of housing, education, health and culture, was promoted to make the local city characteristic and independent. The plan to make the locally independent base have to consider the economical condition, the quality of life and the sustainable development. First of all The balanced city-planning is demanded to build friendly environmental and sustainable city. energy-efficient buildings shuld be designed to deal with the energy and environment problem. So we analyze the energy demand plan and the method to introduce the renewable energy system. As a result, the reduction ratio of the energy demand are greatly imbalanced between innovation cities. and only the Gwang-ju Jeon-nam innovation city is planed to apply the renewable energy to 5% of total energy demand.

  • PDF

A Study on the Safety Stock (안전재고에 관한 연구)

  • 박병기;정종식
    • Journal of Korean Society of Industrial and Systems Engineering
    • /
    • v.10 no.16
    • /
    • pp.143-147
    • /
    • 1987
  • Safety stocks constitute one of the major means of dealing with the uncertainties associated with variation in demand and lead time. Adeguate safety facilitate production activities and help to assure customers if good service on the other hand, carrying safety storks ties up working capital on goods that sit idle. The major problem of safety stocks management thus of consists of trying to achieve an optimal balance between the other carrying cost and the costs of stock shortage. Therefore, this study aims to find safety stock level of the fixed reorder quantity system and the fixed reorder cycle system of minimizing total cost when both demand and lead time are variable. (The distribution of demand and lead time is a mere assumption that follows the normal distribution) The results can be summarized as follows. i) Safety factor on the safety stock is determined by carrying cost and the costs of stock shortage: An optimal safety stick=the costs of stork shortage($C_s$) (the carrying cost($C_h$)+the costs of stock storage($C_s$). ii) The safety stock level of the fixed reorder quantity system is ($a{\;}_p\sqrt{L}{\sigma}$) under uncertainties. iii) The safety stock level of the fixed reorder cycle system is ($a{\;}_p\sqrt{R+L{\sigma}}$) under uncertain demand and constant lead time. ($a{\;}_p\sqrt{L{\sigma}_d{\;^2+{\mu}^2L{\sigma}^2}$) under demand and lead time uncertainties.

  • PDF