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2022 5th Asia Conference on Energy and Electrical Engineering (ACEEE)最新文献

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The Agrivoltaic System Development in Baron Technopark, Yogyakarta, Indonesia 巴伦科技园区的农业发电系统发展,日惹,印度尼西亚
Pub Date : 2022-07-08 DOI: 10.1109/ACEEE56193.2022.9851860
K. Ahmad, Y. Wijayanti, Andri Subandriya, Titin Setyorini, Saiful Mukhid, Ridwan Budi Prasetyo
This paper is a mini-review of the development of the agrivoltaic system, with the case study at the pilot plant site of Baron Technopark, located in the coastal area of southern java island, Indonesia. It is important to understand the agricultural practice, photovoltaic (PV) performance, and microclimate interrelation to formulate the optimum crop yield and energy outcome. This study's objective is to develop a preliminary design of an agrivoltaic system. The study method performed were literature study and focus group discussion with the experts. The results are as follows: the agrivoltaic system consists of both agriculture and fishery practices; eggplant crops will be cultivated with drip irrigation; parameters of PV cell temperature, solar radiation, ambient temperature, humidity, and, current and voltage of the PV array. This design will be further applied in the future to study crop productivity, water productivity, PV performance, and energy yield from the PV system.
本文以位于印度尼西亚爪哇岛南部沿海地区的Baron Technopark试点工厂为例,对农业光伏系统的发展进行了简要回顾。了解农业实践、光伏(PV)性能和小气候之间的相互关系对于制定最佳作物产量和能源产出非常重要。本研究的目的是开发一个农业光伏系统的初步设计。采用文献研究法和专家焦点小组讨论法。结果表明:农业光伏系统是由农业和渔业实践共同构成的;茄子作物将采用滴灌栽培;光伏电池温度、太阳辐射、环境温度、湿度、光伏阵列电流、电压等参数。该设计将在未来进一步应用于研究作物生产力、水分生产力、光伏性能和光伏系统的能源产量。
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引用次数: 1
Quality of the Electrical Service of the Peruvian Electrical System in Comparison with International Countries Through Data Envelope Analysis 通过数据包络分析比较秘鲁电力系统与国际国家的电力服务质量
Pub Date : 2022-07-08 DOI: 10.1109/ACEEE56193.2022.9851870
Carlos Quispe
In this article, the quality of the electrical service in Peru is analyzed, in addition, the reliability of the electrical supply is evaluated compared to other countries. For the development of this paper, the regulations, activities and statutes of international law were reviewed that allow finding parameters to estimate the quality and its effects of providing this service in particular. Indicators based on the regulatory characteristics of international supervisory bodies are proposed, likewise, two analysis scenarios are proposed, oriented on the current conditions of SAIDI (System Average Interruption Duration Index) and SAIFI (System Average Interruption Frecuency Index) of countries within the region (Chile, Colombia, Brazil and Peru), and countries outside the region (Spain and Italy). To determine the efficiency in quality of service, data envelopment analysis (DEA) is used, considering the goals that the Peruvian electrical system must achieve to be considered efficient. The improvement in the quality of the electricity supply for low voltage users (mainly) can be focused on adapting energy or electricity policies, which allow drastic tolerances of the indicators, however, it is appreciated how the rate could be a resource to optimize the electrical system through control. The analysis method is proposed through the use of DEA, to estimate quantitative values of quality. Finally, Peru is considered an inefficient country in terms of quality of electricity service, compared to the countries analyzed, through the DEA method. Peru has varied geographical conditions of difficult access, diverse climatic conditions and high dispersion of demand, which directly influence efficiency.
本文对秘鲁的电力服务质量进行了分析,并对秘鲁电力供应的可靠性与其他国家进行了比较。为了编写本文,审查了国际法的条例、活动和法规,以便找到参数来估计特别是提供这项服务的质量及其影响。根据国际监管机构的监管特点提出了指标,同样,针对区域内国家(智利、哥伦比亚、巴西和秘鲁)和区域外国家(西班牙和意大利)的SAIDI(系统平均中断时间指数)和SAIFI(系统平均中断频率指数)的现状,提出了两种分析情景。为了确定服务质量的效率,考虑到秘鲁电力系统必须达到的目标,使用了数据包络分析(DEA)。改善(主要)低压用户的电力供应质量可以集中在调整能源或电力政策上,这些政策允许指标有很大的偏差,但是,人们认识到,费率如何能够成为通过控制优化电力系统的资源。提出了采用DEA分析方法,对质量的定量值进行估计。最后,与通过DEA方法分析的国家相比,秘鲁在电力服务质量方面被认为是一个效率低下的国家。秘鲁地理条件多样,交通不便,气候条件多样,需求高度分散,这些都直接影响到效率。
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引用次数: 1
Copyright and Reprint Permission 版权和转载许可
Pub Date : 2022-07-01 DOI: 10.1109/aceee56193.2022.9851873
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引用次数: 0
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2022 5th Asia Conference on Energy and Electrical Engineering (ACEEE)
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