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便携式I-V测试仪测试结果准确性的影响因素研究
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作者 张果 王瑜 +2 位作者 卢刚 马晓龙 雷鸣宇 《太阳能》 2022年第2期23-30,共8页
采用便携式I-V测试仪在户外进行光伏组件最大功率测试时,测试结果会不同程度地受到外界因素的影响,从而使得到的光伏组件最大功率测试结果出现偏差。本文通过对比不同外界因素(比如:太阳辐照度、辐照计摆放位置、光伏组件工作温度及风速... 采用便携式I-V测试仪在户外进行光伏组件最大功率测试时,测试结果会不同程度地受到外界因素的影响,从而使得到的光伏组件最大功率测试结果出现偏差。本文通过对比不同外界因素(比如:太阳辐照度、辐照计摆放位置、光伏组件工作温度及风速等)下测试得到的光伏组件最大输出功率值,分析不同外界因素对户外采用便携式I-V测试仪进行光伏组件最大功率测试结果的影响,以期为户外光伏组件最大功率测试提供一种最优的测试方案。 展开更多
关键词 便携式I-V测试 最大输出功率 外界因素 光伏组件 最大功率测试 辐照计
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Aerodynamic Performance of Wind Microturbines and Their Dynamic Response
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作者 Gordon Breeze 《Journal of Civil Engineering and Architecture》 2016年第3期261-267,共7页
Wind microturbines typically have rotor diameters of 2 m or less. This paper presents theoretical expressions that can be used to determine the aerodynamic performance of wind microturbines. A commercially-available t... Wind microturbines typically have rotor diameters of 2 m or less. This paper presents theoretical expressions that can be used to determine the aerodynamic performance of wind microturbines. A commercially-available three-bladed microturbine was tested at the outlet plane of a wind tunnel. The cross-section dimensions of the wind tunnel jet are 2.5 m (horizontal) x 1.5 m (vertical). The tested microturbine has a diameter of 1.2 m, and it generates a maximum power output of about 300 W. The paper provides the wind tunnel test methodology that was used to determine the mean and fluctuating forces generated by the aforementioned wind microturbine. Both the static and dynamic responses of the turbine were measured, and results from this testing are presented in this paper. These results enable the trends and predictions of the theoretical expressions to be compared with wind tunnel measurements. It is shown that, for this particular microturbine, the behaviours of these test measurements are consistent with the expected theoretical predictions. 展开更多
关键词 MICROTURBINE WIND TUNNEL aerodynamic performance FORCES DYNAMICS
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HEART RATE VARIABILITY DURING HIGH-INTENSITY EXERCISE 被引量:3
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作者 SARMIENTO Samuel GARCIA-MANSO +4 位作者 Juan Manuel MARTIN-GONZALEZ Juan Manuel VA-AMONDE Diana CALDERóN Javier DA SILVA-GRIGOLETTO Marzo Edir 《Journal of Systems Science & Complexity》 SCIE EI CSCD 2013年第1期104-116,共13页
The aim of this paper is to describe and analyse the behaviour of heart rate variability(HRV)during constant-load,high-intensity exercise using a time frequency analysis(Wavelet Transform).Eleven elite cyclists took p... The aim of this paper is to describe and analyse the behaviour of heart rate variability(HRV)during constant-load,high-intensity exercise using a time frequency analysis(Wavelet Transform).Eleven elite cyclists took part in the study(age:18.6±3.0 years;VO_(2max):4.88±0.61 litres·min^(-1)).Initially,all subjects performed an incremental cycloergometer test to determine load power in a constant load-test(379.55±36.02 W;89.0%).HRV declined dramatically from the start of testing(p<0.05).The behaviour of power spectral density within the LF band mirrored that of total energy,recording a significant decrease from the outset LF peaks fell rapidly thereafter,remaining stable until the end of the test.HF-VHF fell sharply in the first 20 to 30 seconds.The relative weighting(%) of HF-VHF was inverted with the onset of fatigue,[1.6%at the start,7.1(p<0.05) at the end of the first phase,and 43.1%(p<0.05) at the end of the test].HF-VHF_(peak) displayed three phases:a moderate initial increase,followed by a slight fall,thereafter increasing to the end of the test.The LF/HF-VHF ratio increased at the start,later falling progressively until the end of the first phase and remaining around minimal values until the end of the test. 展开更多
关键词 CYCLING heart rate variability wavelet.
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