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      • KCI등재

        Simulated Solar Light Responsive Carbon Nitride/TiO2 Nanofiber Heterojunction Photocatalyst: Synthesis, Characterization, and Photocatalytic Performance

        Jian Zhang,Yanjuan Wang,Shaozheng Hu 대한화학회 2015 Bulletin of the Korean Chemical Society Vol.36 No.1

        A carbon nitride/TiO2 nanofiber heterojunction photocatalyst that is responsive to simulated solar light is prepared by a simple self-assembly method. X-ray diffraction (XRD), UV–vis spectroscopy, scanning electron microscopy (SEM), electrochemical impedance spectroscopy (EIS), and X-ray photoelectron spectroscopy (XPS) are used to characterize the prepared catalysts. The results indicate that the TiO2 nanofiber is coated by the g-C3N4 sheet to form a core/shell structure, which is favorable for the fast interfacial charge transfer and separation of the photogenerated electron–hole pairs. The activity and stability of carbon nitride/TiO2 nanofiber heterojunction photocatalyst are tested in the photocatalytic degradation of rhodamine B (RhB) under simulated solar light. The rate constant of TiNF(0.3)-CN is found to be 0.044 min−1, which is 4 and 2.2 times higher than that of single TiO2 nanofiber and g-C3N4, respectively. A possible mechanism is proposed.

      • SCIESCOPUSKCI등재

        Modeling and Design of Zero-Voltage-Switching Controller for Wireless Power Transfer Systems Based on Closed-Loop Dominant Pole

        Chen, Cheng,Zhou, Hong,Deng, Qijun,Hu, Wenshan,Yu, Yanjuan,Lu, Xiaoqing,Lai, Jingang The Korean Institute of Power Electronics 2019 JOURNAL OF POWER ELECTRONICS Vol.19 No.5

        Zero-Voltage-Switching (ZVS) operation for a Wireless Power Transfer (WPT) system can be achieved by designing a ZVS controller. However, the performance of the controller in some industrial applications needs to be designed tightly. This paper introduces a ZVS controller design method for WPT systems. The parameters of the controller are designed according to the desired performance based on the closed loop dominant pole placement method. To describe the dynamic characteristics of the system ZVS angle, a nonlinear dynamic model is deduced and linearized using the small signal linearization method. By analyzing the zero-pole distribution, a low-order equivalent model that facilitates the controller design is obtained. The parameters of the controller are designed by calculating the time constant of the closed-loop dominant poles. A prototype of a WPT system with the designed controller and a five-stage multistage series variable capacitor (MSVC) is built and tested to verify the performance of the controller. The recorded response curves and waveforms show that the designed controller can maintain the ZVS angle at the reference angle with satisfactory control performance.

      • KCI등재

        Modeling and Design of Zero-Voltage-Switching Controller for Wireless Power Transfer Systems Based on Closed-Loop Dominant Pole

        Cheng Chen,Hong Zhou,Qijun Deng,Wenshan Hu,Yanjuan Yu,Xiaoqing Lu,Jingang Lai 전력전자학회 2019 JOURNAL OF POWER ELECTRONICS Vol.19 No.5

        Zero-Voltage-Switching (ZVS) operation for a Wireless Power Transfer (WPT) system can be achieved by designing a ZVS controller. However, the performance of the controller in some industrial applications needs to be designed tightly. This paper introduces a ZVS controller design method for WPT systems. The parameters of the controller are designed according to the desired performance based on the closed loop dominant pole placement method. To describe the dynamic characteristics of the system ZVS angle, a nonlinear dynamic model is deduced and linearized using the small signal linearization method. By analyzing the zero-pole distribution, a low-order equivalent model that facilitates the controller design is obtained. The parameters of the controller are designed by calculating the time constant of the closed-loop dominant poles. A prototype of a WPT system with the designed controller and a five-stage multistage series variable capacitor (MSVC) is built and tested to verify the performance of the controller. The recorded response curves and waveforms show that the designed controller can maintain the ZVS angle at the reference angle with satisfactory control performance.

      • KCI등재

        Dynamic simulation and analysis of the elevating mechanism of a forklift based on a power bond graph

        Yao Wang,Dingxuan Zhao,Lei Wang,Zhuxin Zhang,Lili Wang,Yanjuan Hu 대한기계학회 2016 JOURNAL OF MECHANICAL SCIENCE AND TECHNOLOGY Vol.30 No.9

        An electric elevating mechanism is designed based on the working principle of the lifting equipment for the CPD30 forklift. The mathematical models based on the power bond graph for an electric elevating system and a hydraulic elevating system are built by considering the execution condition of the fork arms of a forklift, including starting, rising and braking. On the basis of these models, dynamic simulation and analysis are performed for the starting, rising and braking of the fork arms frame. Then, the corresponding mathematical model is derived. Furthermore, the curve of the movement velocity of the fork arms frame is determined. The characteristics of the two types of lifting mechanism are summarized for two types of working effect of the lifting system under the same conditions by comparing the difference between the actual trajectory curve and the curve of the original plan. The theoretical foundations for the type selection of the forklift elevating mechanism and even that of engineering machinery are provided.

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