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Comparative Study on Energy Consumption Structure of Ordinary Rural Households and Rural Tourism Households in Zhejiang Province, China 浙江省农村普通家庭与乡村旅游家庭能源消费结构比较研究
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.151003
Bingxin Fan, Wenxuan Li, Zilu Yin, Meiyan Wang, Chen Chen
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引用次数: 0
Indian Solar Panel Initiatives in Reducing Carbon Dioxide Emissions 印度太阳能电池板减少二氧化碳排放的倡议
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.154009
Manoj K. Khanna, Sarika Malik, H. Kumar,  . Suruchi
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引用次数: 1
Object-Oriented Modeling of the Variation of Acceleration and Deceleration Characteristics in Relation to Speed Bands for Railway Vehicles 铁道车辆加减速特性随速度带变化的面向对象建模
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.158014
Hyun-Soo Jeong, J. Park, Han-Sol Lee
Automated operation and artificial intelligence technology have become essential for ensuring the safety, efficiency, and punctuality of railways, with applications such as ATO (Automatic Train Operation). In this study, the authors propose a method to efficiently simulate the kinematic characteristics of railroad vehicles depending on their speed zone. They utilized the function overloading function supported by a programming language and applied the fourth-order Lunge-Kutta method for dynamic simulation. By constructing an object model, the authors calculated vehicle characteristics and TPS and compared them with actual values, verifying that the developed model represents the real-life vehicle characteristics accurately. The study highlights potential improvements in automated driving and energy consumption optimization in the railway industry.
自动化运营和人工智能技术对于确保铁路的安全、效率和准时性至关重要,例如ATO(列车自动运营)。在本研究中,作者提出了一种有效地模拟轨道车辆随速度区的运动特性的方法。他们利用编程语言支持的函数重载函数,采用四阶Lunge-Kutta方法进行动态仿真。通过构建目标模型,计算车辆特性和TPS,并与实际值进行比较,验证了所建立的模型准确地反映了实际车辆特性。该研究强调了铁路行业在自动驾驶和能耗优化方面的潜在改进。
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引用次数: 0
Solar Photovoltaics Development in Nigeria: Drivers, Barriers, and Policies 尼日利亚的太阳能光伏发展:驱动因素、障碍和政策
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.1510017
Abiodun Adeola Akinola
Energy access is vital to a nation’s economic growth and its populace’s social well-being. Still, there is a lack of adequate energy in Nigeria, negatively affecting the country’s socio-economic development. Due to the inadequate energy supply, some manufacturing companies shut their operations, and most Nigerians now use backup generators (BUGs) with their attendant health hazards, environmental pollution, and global warming. The need for energy access and a sustainable energy supply through renewable energy (RE) resources necessitates adopting solar photovoltaics (PV) in Nigeria. Studies on Nigeria’s energy accessibility and sustainability are generally on RE development and a few on solar PV applications. This research covers the need for an in-depth analysis of the growth of solar PV in Nigeria, and the research question is: What factors promote or limit the adoption of solar photovoltaics in Nigeria? A method of Systematic Literature Review (SLR) and Thematic Analysis (TA) is employed for the analysis. The research findings are divided into drivers, barriers, and policies. Some identified factors promoting the adoption of solar PV are energy poverty and the urgency to improve electricity supply, the ease of its operation and maintenance, and the Nigerian government’s commitment to clean electricity supply with policy initiatives and increased awareness of solar PV applications. Conversely, some noticed factors mitigating the growth of solar PV are poor tariff systems, dual subsidies of electricity and petroleum, and lack of finance and economic incentives.
能源获取对一个国家的经济增长和民众的社会福祉至关重要。尽管如此,尼日利亚仍然缺乏足够的能源,这对该国的社会经济发展产生了负面影响。由于能源供应不足,一些制造公司关闭了他们的业务,大多数尼日利亚人现在使用备用发电机(bug),随之而来的是健康危害,环境污染和全球变暖。通过可再生能源(RE)资源获得能源和可持续能源供应的需求使得尼日利亚必须采用太阳能光伏发电(PV)。关于尼日利亚能源可及性和可持续性的研究一般是关于可再生能源的发展,少数是关于太阳能光伏的应用。本研究涵盖了对尼日利亚太阳能光伏增长的深入分析,研究问题是:哪些因素促进或限制了尼日利亚太阳能光伏的采用?本文采用系统文献综述(SLR)和主题分析法(TA)进行分析。研究结果分为驱动因素、障碍和政策。一些已确定的促进太阳能光伏采用的因素是能源贫困和改善电力供应的紧迫性,其操作和维护的便利性,以及尼日利亚政府承诺通过政策举措和提高对太阳能光伏应用的认识来清洁电力供应。相反,一些值得注意的减缓太阳能光伏增长的因素是糟糕的关税制度,电力和石油的双重补贴,以及缺乏财政和经济激励。
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引用次数: 0
Minimization of Electric Power Losses on 132 kV and 220 kV Uganda Electricity Transmission Lines 132千伏和220千伏乌干达输电线路的电力损耗最小化
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.152006
O. Living, S. N. Nnamchi, K. Ukagwu, A. Abdulkarim, Z. O. Jagun
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引用次数: 2
Analysis of Light Load Efficiency Characteristics of a Dual Active Bridge Converter Using Wide Band-Gap Devices 宽频带隙双有源桥式变换器轻载效率特性分析
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.1510019
Bongwoo Kwak
In this paper, the zero voltage switching (ZVS) region of a dual active bridge (DAB) converter with wide band-gap (WBG) power semiconductor device is analyzed. The ZVS region of a DAB converter varies depending on output power and voltage ratio. The DAB converters operate with hard switching at light loads, it is difficult to achieve high efficiency. Fortunately, WBG power semiconductor devices have excellent hard switching characteristics and can increase efficiency compared to silicon (Si) devices. In particular, WBG devices can achieve ZVS at low load currents due to their low parasitic output capacitance (Co,tr) characteristics. Therefore, in this paper, the ZVS operating resion is analyzed based on the characteristics of Si, silicon carbide (SiC) and gallium nitride (GaN). Power semiconductor devices. WBG devices with low Co,tr operate at ZVS at lower load currents compared to Si devices. To verify this, experiments are conducted and the results are analyzed using a 3 kW DAB converter. For Si devices, ZVS is achieved above 1.4 kW. For WBG devices, ZVS is achieved at 700 W. Due to the ZVS conditions depending on the switching device, the DAB converter using Si devices achieves a power conversion efficiency of 91% at 1.1 kW output. On the other hand, in the case of WBG devices, power conversion efficiency of more than 98% is achieved under 11 kW conditions. In conclusion, it is confirmed that the WBG device operates in ZVS at a lower load compared to the Si device, which is advantageous in increasing light load efficiency.
本文分析了双有源桥(DAB)变换器的零电压开关(ZVS)区域,该变换器采用宽带隙(WBG)功率半导体器件。DAB变换器的ZVS区域取决于输出功率和电压比。DAB变换器在轻负荷下采用硬开关工作,难以实现高效率。幸运的是,WBG功率半导体器件具有优异的硬开关特性,与硅(Si)器件相比,可以提高效率。特别是,WBG器件由于其低寄生输出电容(Co,tr)特性,可以在低负载电流下实现ZVS。因此,本文基于硅、碳化硅(SiC)和氮化镓(GaN)的特性,分析了ZVS的运行版本。功率半导体器件。与硅器件相比,具有低Co,tr的WBG器件工作在ZVS下,负载电流更低。为了验证这一点,使用3kw DAB变换器进行了实验并对结果进行了分析。对于Si器件,ZVS达到1.4 kW以上。对于WBG器件,ZVS达到700w。由于ZVS条件取决于开关器件,使用Si器件的DAB变换器在1.1 kW输出时实现了91%的功率转换效率。另一方面,对于WBG器件,在11 kW的条件下,功率转换效率达到98%以上。综上所述,与Si器件相比,WBG器件在ZVS下以更低的负载工作,有利于提高轻负载效率。
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引用次数: 0
Battery-Free Power Supply for Wireless Sensor Combining Photovoltaic Cells and Supercapacitors 结合光伏电池和超级电容器的无线传感器无电池电源
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.153007
V. Boitier, B. Estibals, F. Huet, L. Seguier
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引用次数: 4
Performance Improvement of CIGS Solar Cell: A Simulation Approach by SCAPS-1D CIGS太阳能电池性能改进:基于SCAPS-1D的仿真方法
Pub Date : 2023-01-01 DOI: 10.4236/epe.2023.158015
Md Ferdous Wahid, Md. Nuralam Howlader, Nazmul Ahasan, Md. Mizanur Rahman
Thin-film solar cells possess the distinct advantage of being cost-effective and relatively simple to manufacture. Nevertheless, it is of utmost importance to enhance their overall performance. In this research work, copper indium gallium selenide (CIGS)-based ultra-thin solar cell (SC) configuration (Ag/ZnO/ZnSe/CIGS/Si/Ni) has been designed and examined using SCAPS-1D. The numerical calculations revealed that this new design resulted in a substantial improvement in SC performance. This study explores the utilization of two absorber layers, CIGS and Si, both with a total of 2 μm thickness, to enhance device performance while reducing material costs, observing an increase in key SC parameters as the Si absorber layer thickness is increased, reaching a maximum efficiency of 29.13% when CIGS and Si thicknesses are set at 0.4 μm and 1.6 μm, respectively with doping absorber doping density of 10 14 cm −3 . Furthermore, we analyze the impact of variation in absorber and buffer layer thickness, as well as doping concentration, surface recombination velocity (SRV), electron affinity, series-shunt resistance, and temperature, on optimized CIGS SC parameters such as short-circuit current density (J SC ), open circuit voltage (V OC ), fill factor (FF), and power conversion efficiency (PCE). The findings yielded by the investigation offer significant elucidation regarding the fabrication of economically viable and highly efficient non-hazardous CIGS
薄膜太阳能电池具有成本效益和相对简单制造的明显优势。然而,提高他们的整体表现是至关重要的。在这项研究工作中,利用SCAPS-1D设计并测试了基于铜铟硒化镓(CIGS)的超薄太阳能电池(SC)结构(Ag/ZnO/ZnSe/CIGS/Si/Ni)。数值计算表明,这种新的设计导致了SC性能的实质性改善。本研究探讨了利用厚度均为2 μm的CIGS和Si两层吸收层,在提高器件性能的同时降低材料成本,观察到随着Si吸收层厚度的增加,关键SC参数有所增加,当CIGS和Si厚度分别为0.4 μm和1.6 μm,掺杂吸收剂掺杂密度为10 14 cm−3时,效率最高,达到29.13%。此外,我们还分析了吸收层和缓冲层厚度、掺杂浓度、表面复合速度(SRV)、电子亲和度、串联并联电阻和温度对优化后的CIGS SC参数(短路电流密度(J SC)、开路电压(V OC)、填充因子(FF)和功率转换效率(PCE))的影响。该研究结果对经济可行、高效无害的CIGS的制造提供了重要的说明
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引用次数: 0
Analysis of Emissions Profiles of Hydraulic Fracturing Engine Technologies 水力压裂发动机技术排放特征分析
Pub Date : 2023-01-01 DOI: 10.33915/etd.11350
N.A.J. Wells
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引用次数: 0
The Evaluation of Wind Energy Potentials in South Africa 南非风能潜力评估
Pub Date : 2022-04-29 DOI: 10.5923/j.ep.20221201.02
E. Merem, Y. Twumasi, J. Wesley, D. Olagbegi, M. Crisler, C. Romorno, M. Alsarari, P. Isokpehi, A. Hines, G. Hirse, G. S. Ochai, E. Nwagboso, S. Fageir, S. Leggett, J. Offiah, S. Emeakpor
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能源与动力工程(英文)
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