Periodic arrays of hybrid-shunted piezoelectric patches are used to control the band-gaps of phononic metamaterial beams. Passive resistive-inductive (RL) shunting circuits can produce a narrow resonant band-gap (R...Periodic arrays of hybrid-shunted piezoelectric patches are used to control the band-gaps of phononic metamaterial beams. Passive resistive-inductive (RL) shunting circuits can produce a narrow resonant band-gap (RG), and active negative capacitive (NC) shunting circuits can broaden the Bragg band-gaps (BGs). In this article, active NC shunting circuits and passive resonant RL shunting circuits are connected to the same piezoelectric patches in parallel, which are usually called hybrid shunting circuits, to control the location and the extent of the band-gaps. A super-wide coupled band-gap is generated when the coupling between RG and the BG occurs. The attenuation constant of the infinite periodic structure is predicted by the transfer matrix method, which is compared with the vibration transmittance of a finite periodic structure calculated by the finite element method. Numerical results show that the hybrid-shunting circuits can make the band-gaps wider by appropriately selecting the inductances, negative capacitances, and resistances.展开更多
In this paper, a new technique using a Current Shunt and a Micropotentiometer has been used to study the electrical performance of a large area multicrystalline silicon solar cell at outdoor conditions. The electrical...In this paper, a new technique using a Current Shunt and a Micropotentiometer has been used to study the electrical performance of a large area multicrystalline silicon solar cell at outdoor conditions. The electrical performance is mainly described by measuring both cell short circuit current and open circuit voltage. The measurements of this cell by using multimeters suffer from some problems because the cell has high current intensity with low output voltage. So, the solar cell short circuit current values are obtained by measuring the voltage developed across a known resistance Current Shunt. Samples of the obtained current values are accurately calibrated by using a Micropotentiometer (μpot) thermal element (TE) to validate this new measuring technique. Moreover, the solar cell open circuit voltage has been measured. Besides, the cell output power has been calculated and can be correlated with the measured incident radiation.展开更多
The temperature effects on the electrical performance of a large area multicrystalline silicon solar cell with back-contact technology have been studied in a desert area under ambient conditions using the current shun...The temperature effects on the electrical performance of a large area multicrystalline silicon solar cell with back-contact technology have been studied in a desert area under ambient conditions using the current shunt measuring technique. Therefore, most of the problems encountered with traditional measuring techniques are avoided. The temperature dependency of the current shunt from 5oC up to 50oC has been investigated. Its temperature coefficient proves to be negligible which means that the temperature dependency of the solar cell is completely independent of the current shunt. The solar module installed in a tilted position at the optimum angle of the location, has been tested in two different seasons (winter and summer). The obtained solar cell short circuit current, open circuit voltage and output power are correlated with the measured incident radiation in both seasons and all results are discussed.展开更多
近年来,变电站真空断路器投切10 k V并联电容器组时发生了多起断路器或电容器炸裂事故,在更换断路器和改善保护措施后,此类事故还是屡禁不止。为减少该工况下绝缘事故的发生,重庆市某110 k V变电站采用分相控制技术的永磁机构真空断路...近年来,变电站真空断路器投切10 k V并联电容器组时发生了多起断路器或电容器炸裂事故,在更换断路器和改善保护措施后,此类事故还是屡禁不止。为减少该工况下绝缘事故的发生,重庆市某110 k V变电站采用分相控制技术的永磁机构真空断路器来抑制投切电容器组时的合闸涌流和降低分闸重燃概率。相控断路器是抑制并联电容器合闸涌流与分闸过电压的重要措施之一。为了验证该技术的有效性,首先基于电路理论分析了合闸角对合闸涌流的影响以及分闸过电压机理,之后在重庆市某110 k V变电站针对某种型号相控断路器与普通真空断路器合(分)闸10 k V并联电容器进行了一系列的现场试验研究。试验结果表明:相控断路器的控制精度高(合(分)闸误差均在±0.3 ms以内);普通真空断路器的合闸涌流高达4.5倍额定电流,而相控断路器的合闸涌流均在2.4倍额定电流以下;控制分闸技术能够保证首开相的工频续流开断时断路器断口间有足够的开距,降低重燃发生的概率,从而提高系统运行的安全性与可靠性。展开更多
基金supported by the National Natural Science Foundation of China(Grant Nos.51275519 and 51175501)
文摘Periodic arrays of hybrid-shunted piezoelectric patches are used to control the band-gaps of phononic metamaterial beams. Passive resistive-inductive (RL) shunting circuits can produce a narrow resonant band-gap (RG), and active negative capacitive (NC) shunting circuits can broaden the Bragg band-gaps (BGs). In this article, active NC shunting circuits and passive resonant RL shunting circuits are connected to the same piezoelectric patches in parallel, which are usually called hybrid shunting circuits, to control the location and the extent of the band-gaps. A super-wide coupled band-gap is generated when the coupling between RG and the BG occurs. The attenuation constant of the infinite periodic structure is predicted by the transfer matrix method, which is compared with the vibration transmittance of a finite periodic structure calculated by the finite element method. Numerical results show that the hybrid-shunting circuits can make the band-gaps wider by appropriately selecting the inductances, negative capacitances, and resistances.
文摘In this paper, a new technique using a Current Shunt and a Micropotentiometer has been used to study the electrical performance of a large area multicrystalline silicon solar cell at outdoor conditions. The electrical performance is mainly described by measuring both cell short circuit current and open circuit voltage. The measurements of this cell by using multimeters suffer from some problems because the cell has high current intensity with low output voltage. So, the solar cell short circuit current values are obtained by measuring the voltage developed across a known resistance Current Shunt. Samples of the obtained current values are accurately calibrated by using a Micropotentiometer (μpot) thermal element (TE) to validate this new measuring technique. Moreover, the solar cell open circuit voltage has been measured. Besides, the cell output power has been calculated and can be correlated with the measured incident radiation.
文摘The temperature effects on the electrical performance of a large area multicrystalline silicon solar cell with back-contact technology have been studied in a desert area under ambient conditions using the current shunt measuring technique. Therefore, most of the problems encountered with traditional measuring techniques are avoided. The temperature dependency of the current shunt from 5oC up to 50oC has been investigated. Its temperature coefficient proves to be negligible which means that the temperature dependency of the solar cell is completely independent of the current shunt. The solar module installed in a tilted position at the optimum angle of the location, has been tested in two different seasons (winter and summer). The obtained solar cell short circuit current, open circuit voltage and output power are correlated with the measured incident radiation in both seasons and all results are discussed.
文摘近年来,变电站真空断路器投切10 k V并联电容器组时发生了多起断路器或电容器炸裂事故,在更换断路器和改善保护措施后,此类事故还是屡禁不止。为减少该工况下绝缘事故的发生,重庆市某110 k V变电站采用分相控制技术的永磁机构真空断路器来抑制投切电容器组时的合闸涌流和降低分闸重燃概率。相控断路器是抑制并联电容器合闸涌流与分闸过电压的重要措施之一。为了验证该技术的有效性,首先基于电路理论分析了合闸角对合闸涌流的影响以及分闸过电压机理,之后在重庆市某110 k V变电站针对某种型号相控断路器与普通真空断路器合(分)闸10 k V并联电容器进行了一系列的现场试验研究。试验结果表明:相控断路器的控制精度高(合(分)闸误差均在±0.3 ms以内);普通真空断路器的合闸涌流高达4.5倍额定电流,而相控断路器的合闸涌流均在2.4倍额定电流以下;控制分闸技术能够保证首开相的工频续流开断时断路器断口间有足够的开距,降低重燃发生的概率,从而提高系统运行的安全性与可靠性。