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现有文献针对计及转子变流器(RSC)控制的双馈感应风电机组(DFIG)定子短路电流解析表达,将定子磁链当作一阶直流衰减分量或忽略功率外环控制。基于DFIG电压、磁链和RSC控制方程,得到定子电流关于定子电压和定子功率的传递函数,提出定子电流的精确解析表达式。基于RSC内、外环PI参数关系,推导直流分量衰减时间常数和角频率关于PI参数的表达式。分析了RSC内外环PI参数对定子电流直流衰减分量的影响。仿真结果验证了解析表达式的准确性,为PI参数选取和保护装置测量、整定提供依据。 相似文献
3.
Sanjeev Kumar Pandey S. L. Patil Praveen V. Pol S. B. Phadke 《International Journal of Electronics》2020,107(10):1682-1703
ABSTRACT In this paper, two control schemes for boost converters affected by uncertainties in input voltage and load are proposed. The boost converter dynamics is redefined in terms of new state variables to facilitate the use of a disturbance observer that can estimate matched and unmatched disturbances. A sliding surface, which is new in the context of boost converters, is proposed to enable tracking and regulation of output voltage without requiring measurement of input voltage and load current. The stability of the overall system including the disturbance observer, the sliding variable and the output is proved. The performance of the schemes is assessed for regulation of output voltage and tracking of reference voltage by simulation as well as experimentation in which various types of uncertainties and various types of reference voltages are considered. 相似文献
4.
This paper introduces a 9-bit time-based capacitance-to-digital converter (T-CDC). This T-CDC adopts a new design methodology for parasitic cancellation with a simple calibration technique. In T-CDCs, the input sensor capacitance is first converted into a delay pulse using a capacitance-to-time converter (CTC) circuit; then this delay signal is converted into a digital code through a time-to-digital converter (TDC) circuit. A prototype of the proposed T-CDC is implemented in UMC 0.13 μm CMOS technology. This T-CDC consumes 8.42 μW and achieves a maximum SNR of 45.14 dB with a conversion time of 1 μs that corresponds to a figure of merit (FoM) of 16.4 fJ/Conv. 相似文献
5.
Soheil Khosrogorji Sepehr Soori Hossein Torkaman 《International Journal of Circuit Theory and Applications》2019,47(10):1645-1663
In this paper, a new design procedure for LLC converter has been introduced. In fact, this method is a computer-based design algorithm based on a numerical technique. In the process of designing, the value of the resonant element is obtained by solving the LLC converter fundamental equation. This converter will be controlled by using state feedback, such as output voltage variable. As a matter of fact, in a control system, the change of output voltage (because of load variation) will affect the switching frequency, so the output voltage will be tuned. In the designing process, the fundamental equations of LLC converter are obtained, and the value of the resonant elements is calculated. Also, a comparison analysis is carried out between the proposed and typical methods. The simulation is done to investigate the validity of the proposed method. Moreover, a prototype is manufactured, and the experimental test is done to evaluate its applicability. 相似文献
6.
岩相及其组合有规律地分布于层序地层格架内。通过岩心观察和样品测试数据综合分析,基于T(湖进)-R(湖退)层序划分方法,系统分析了渤海湾盆地济阳坳陷古近系沙三下亚段陆相断陷湖盆关键层序界面特征、变化形式、构成样式及分布模式,总结出沙三下亚段的沉积层序演化模式。研究结果表明:①沙三下亚段关键层序界面类型主要有区域性的最大湖泛面和层序界面;②层序变化形式主要有向上变浅的R半旋回、向上变深的T半旋回和稳定旋回3种,层序单元构成可归为3种类型,分别为快升慢降型、慢升快降型和均一型;③沙三下亚段为一完整的三级层序,可划分为4个四级层序,对应早期湖进体系域(早期LTST)、晚期湖进体系域(晚期LTST)、早期湖退体系域(早期LRST)和晚期湖退体系域(晚期LRST),四级层序和划分的五级层序单元具有全区的可对比性和完整性;④济阳坳陷沙三下亚段湖平面在总体快升慢降的背景下,主要经历4个变化阶段——早期LTST的快速上升阶段、晚期LTST的缓慢上升阶段、早期LRST的缓慢下降阶段及晚期LRST的下降阶段。层序演化过程中,构造沉降、沉积物供给和气候条件等因素在不同阶段所起的作用不同,从而造成层序格架内岩相及其组合分布的差异。 相似文献
7.
高速磁悬浮涡轮分子泵(Turbo Molecular Pump, TMP)因其高能量密度、微振动、无需润滑等优点被广泛应用于工业领域,但外部电源失效时,高速转子跌落后与保护轴承产生剧烈撞击和摩擦,将给系统带来致命损害。针对以上问题,提出一种基于平均功率平衡法的电力失效补偿控制(Power Failure Compensation Control, PFCC)方法。首先,设计电机能量回馈电路;其次,对Buck-Boost变换器进行数学建模,设计一种双环非线性控制器,其中电流内环使用滑模控制,电压外环使用平均功率平衡控制(Average Power Balance Control, APBC),并利用Lyapunov函数推导出系统的稳定性条件;最后,通过搭建磁悬浮分子泵PFCC实验平台,对所提出的方法进行实验验证。结果表明:本文所提出的方法具有快速响应和输出鲁棒性,磁悬浮转子由额定转速21000 r/min降至3900 r/min时跌落,电机能量转化效率为96.6%,提高了磁轴承系统的安全性。 相似文献
8.
《International Journal of Hydrogen Energy》2022,47(2):1241-1255
The realization of dc-dc converters performs a vital function in exploiting renewable energy sources such as solar photovoltaic (PV) and fuel cell applications. This paper demonstrates a single-switch unidirectional buck-boost dc-dc converter for continuous power flow control, excluding the hybrid switched-capacitor. The proposed converter utilizes a limited number of passive components, only four diodes and three inductors required, in addition to six capacitors. The converter can operate at a wide input voltage range with continues input current. The converter has experimented under real-time conditions with 660 W PV system. The obtained efficiency ranges from 93% to 98%. Furthermore, the converter has interfaced with 550 W fuel cell operated under different fuel pressure. The realized efficiency ranges from 91% to 97%. The maximum measured inductance current ripple is limited to under 0.70 A in both scenarios, whereas 0.16 V is the maximum output voltage ripple. 相似文献
9.
《International Journal of Hydrogen Energy》2021,46(73):36398-36414
In this paper, a fuel-cell (FC)/battery hybrid direct-current (DC) backup power system is proposed for high step-up applications. This system is composed of a newly developed non-isolated three-port converter, which achieves a high voltage gain by taking the advantage of a quasi Z-source network and an energy transfer capacitor. After analyzing the converter, a comprehensive comparison study and a design procedure are provided. Moreover, the controllers regulating the source power levels while smoothing the FC power profile according to the proposed energy management strategy (EMS) are designed based on the developed small-signal model of the proposed converter. Both hardware and controller design procedures are validated through the PSIM model of the whole system. As a result, it is shown that the proposed system can effectively couple FC and battery while transferring their energies to a high voltage DC bus according to the offered EMS. 相似文献
10.
基于米兰科维奇理论的湖相细粒沉积岩高频层序定量划分 总被引:3,自引:0,他引:3
湖相的细粒沉积同时具有高度的连续性和分辨率,其忠实地记录了湖泊流域的气候和环境变化的信息,由于沉积过程的稳定性,使得这种湖相细粒沉积成为米兰科维奇旋回分析的理想载体,而米兰科维奇理论的时间内涵是进行高频旋回划分和对比有效手段,可以提高地层划分的时间分辨率,是传统层序地层学的有力补充。精确识别米氏旋回是湖相细粒沉积岩高频层序划分的基础,约束沉积速率的变化是米氏旋回识别的关键。针对陆相沉积地层相变快、非均质性强等特点,以磁化率作为替代性指标,引入进化谐波(EHA)和平均频谱拟合差(ASM)分析技术,约束纵向上沉积速率的变化,更精确识别米兰科维奇旋回信号。结合高分辨率层序地层学基准面旋回理论,四级层序与中期基准面旋回对应,时间量化为405 kyr;五级层序与短期基准面旋回对应,时间量化为100 kyr;六级层序与超短期基准面旋回对应,时间量化为40 kyr,最终分别以长偏心率、短偏心率和斜率周期曲线作为四级、五级和六级层序划分的参考曲线,实现湖相细粒沉积岩高频层序定量划分。 相似文献