8 results on '"Kangning Yu"'
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2. The initial-boundary value problem for a strictly hyperbolic equations
- Author
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Dongdong Liu, Kangning Yu, and Lihui Guo
- Subjects
Computational Mathematics ,Applied Mathematics - Published
- 2022
- Full Text
- View/download PDF
3. A Research on College Students' English Learning Methods through Mobile Phone-Based software
- Author
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Kangning Yu
- Published
- 2022
- Full Text
- View/download PDF
4. Planar diffractive grating for magneto-optical trap application: fabrication and testing
- Author
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Guochao Wang, Gaopeng Xue, Xinghui Li, Qihang Zhai, Zhu Lingxiao, Kangning Yu, Shuhua Yan, Junhao Zhu, Aihua Zhong, Guangyao Huang, and Min Wang
- Subjects
Diffraction ,Materials science ,business.industry ,Physics::Optics ,Grating ,Diffraction efficiency ,Atomic and Molecular Physics, and Optics ,law.invention ,Interferometry ,Optics ,Optical path ,law ,Magneto-optical trap ,Atom optics ,Physics::Accelerator Physics ,Physics::Atomic Physics ,Electrical and Electronic Engineering ,business ,Engineering (miscellaneous) ,Beam splitter - Abstract
The design, fabrication, and demonstration of a planar two-dimensional-crossed reflective diffractive grating are proposed to construct a novel optical configuration, to the best of our knowledge, potentially applied for atom cooling and trapping in a magneto-optical trap. Based on the proposed single-beam single-exposure scheme by means of an orthogonal two-axis Lloyd’s mirrors interferometer, we rapidly patterned a ∼ 1 µ m period grating capable of providing a uniform intensity of the diffracted beams. The key structural parameters of the grating including the array square hole’s width and depth were determined, aiming at providing a high energy of the diffracted beams to perform the atom cooling and trapping. To guarantee the diffracted beams to be overlapped possibly, we adopted a polarized beam splitter to guide the optical path of the incident and zero-order diffracted beams. Therefore, one zero-order diffracted beam with a retroreflected mode and four first-order diffracted beams with appropriate optical path constructed a three-dimensional optical configuration of three orthogonal pairs of counterpropagating beams. Finally, three pairs of the counterpropagating cooling laser beams with 9 mm diameter and > 10 % diffraction efficiencies were achieved, and the circular polarization chirality, purity, and compensation of the desired diffracted beams are further evaluated, which preliminarily validated a high applicability for the magneto-optical trap system.
- Published
- 2021
5. An improved signal filtering strategy based on EMD algorithm for ultrahigh precision grating encoder
- Author
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Qian Zhou, Xiaohao Wang, Xinghui Li, Gaopeng Xue, Junhao Zhu, and Kangning Yu
- Subjects
Physics ,Signal processing ,Noise (signal processing) ,Fast Fourier transform ,Wavelet transform ,Grating ,Encoder ,Algorithm ,Signal ,Hilbert–Huang transform - Abstract
The signal filtering of the grating encoder is of great significance to the measurement accuracy, aiming at eliminating the background noise potentially from the temperature changes, airflow fluctuations, and mechanical vibrations. Compared with the traditional time-frequency analysis methods, including wavelet transform, fast Fourier transform (FFT), and time Fourier transforms (TFT), the empirical mode decomposition (EMD) algorithm owing to no basis functions and high adaptability, is widely applied for signal decomposition. Here, we extended the EMD algorithm for the background-noise-based signal filtering in a grating encoder, with the experimental parameters of 5 µm/s moving speed and ~19 mm stroke. Simultaneously, a laser interferometer, as a reference, was additionally assembled to calibrate the measurement results of the grating encoder. The measurement signal was collected by NI acquisition card with a 1000 Hz sample rate and processed by EMD algorithm. Here, EMD decomposed the signal into multiple intrinsic mode functions (IMFs), which were reconstructed by removing the noise and DC components according to the correlation coefficients. Compared with the measurement results of the laser interferometer, the measurement displacement with a 6.2 µm error was solved by the phase correction and arctangent calculation from the reconstructed signals. Finally, our proposed signal-filtering approach based on the EMD algorithm exhibits a stable, accurate, and real-time calculation performance applicable for the grating encoder with ultra-high precision positioning.
- Published
- 2021
- Full Text
- View/download PDF
6. A simplified two-phase differential decoding algorithm for high precision grating encoder
- Author
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Gaopeng Xue, Qian Zhou, Xiaohao Wang, Xinghui Li, Junhao Zhu, Ningning Shi, and Kangning Yu
- Subjects
Physics ,Signal processing ,Observational error ,Interference (communication) ,Linear stage ,Grating ,Encoder ,Signal ,Algorithm ,Group delay and phase delay - Abstract
The signal processing of the grating encoder has a great impact on its accuracy and resolution. We proposed a new type of signal processing method for a grating encoder using a two-phase differential algorithm based on the two-phase physical structure. The interference signal could be divided into two phases with 90 degrees phase delay, capable of effectively reducing the number of optical devices and the space occupied by the reading head. Owing to the rapid elimination of the DC component in the measurement signal, the measurement displacement was solved swiftly by the two-phase signal using the algorithm. In the experiment, a 660 nm laser and a 1 µm-period grating were used, and the scale grating was actuated at a speed of 1 µm/s by a linear stage. With a sampling rate of 20 kHz, the system resolution of the grating encoder was enabled to reach 50 pm. Simultaneously, there was a measurement error of ±1 µm at a stroke of 4 mm, and the error within a single cycle was 2 nm. Compared with the four-phase algorithm, our proposed two-phase differential algorithm exhibits a compact physical structure and fast solution without reducing the accuracy and resolution, which will be of great significance to the real-time measurement and miniaturization of grating encoders.
- Published
- 2021
- Full Text
- View/download PDF
7. The Impact of Internet Finance on Commercial Banks' Personal Wealth Management
- Author
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Kangning Yu
- Subjects
Finance ,Rate of return ,Index (economics) ,business.industry ,media_common.quotation_subject ,The Internet ,business ,Payment ,Product type ,Competitive advantage ,Return on net assets ,Financial services ,media_common - Abstract
With the development of China's economy and society since the 21st century, the residents ' disposable income has increased dramatically, the demand for wealth preservation and appreciation has been constantly increasing, the scale of personal financial services of commercial banks has expanded, and the number of different types of personal financial products has increased. However, with the rapid development of this business, it also shows the shortcomings of high purchase threshold, high transaction cost and complex purchase procedures. The demand of small customers can not be effectively met, the development and popularization of Internet technology, in this context, Internet finance emerged at the historic moment. This paper combines qualitative and quantitative methods, based on the study of relevant literature, analyses the impact of Internet Finance on personal finance business of commercial banks, and puts forward relevant suggestions and opinions according to the analysis results. Firstly, this paper discusses the personal financial services ' development process, product types and characteristics, and theoretically analyses the impact of internal factors such as total assets scale and return on net assets on personal financial services of commercial banks. Then it analyses the Internet finance's definition, development status, competitive advantage and disadvantage, and the impact of various elements of Internet finance, such as the size of Internet financial users, the scale of third-party Internet payment, the Internet financial index and the annual return rate of Internet financial products. Then, 16 listed banks are selected as the research object, and the impact of each factor on the sales scale of individual financial business of commercial banks is empirically analyzed by using econometric regression model. The analysis results show that the scale of third -party Internet payment, the scale of Internet users and the increase of Internet financial index have optimistic influence on the personal financial services of commercial banks. The expansion of the scale of internal total assets and the decrease of the return on net assets will also have the positive impact on the personal financial services of banks, and the annual return on Internet financial products represented by Yu Ebao has formed a certain pressure on the commercial banks ' business, but at the same time, in the fierce market competition, it has brought opportunities for the transformation of commercial banks' personal financial services. Finally, based on the above analysis results, this paper puts forward some suggestions for the development of commercial banks ' personal financial services.
- Published
- 2020
- Full Text
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8. Two-channel six degrees of freedom grating-encoder for precision-positioning of sub-components in synthetic-aperture optics
- Author
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Yuan Weihan, Qian Zhou, Xiaohao Wang, Xinghui Li, Kangning Yu, Gaopeng Xue, Guanhao Wu, and Junhao Zhu
- Subjects
Synthetic aperture radar ,Physics ,Diffraction ,Channel (digital image) ,business.industry ,Reading (computer) ,Physics::Optics ,02 engineering and technology ,Grating ,021001 nanoscience & nanotechnology ,01 natural sciences ,Atomic and Molecular Physics, and Optics ,010309 optics ,Optics ,0103 physical sciences ,Six degrees of freedom ,Head (vessel) ,0210 nano-technology ,business ,Encoder - Abstract
We investigate a novel two-channel grating encoder that can perform simultaneous measurements of six-degree-of-freedom (DOF) motions of two adjacent sub-components of synthetic-aperture optics such as pulse-compression gratings(PCGs) and telescope-primary mirrors. The grating encoder consists of a reading head and two separate gratings, which are attached to the back of the sub-components, respectively. The reading head is constructed such that there two identical optical probes can share the same optical components. The two probes are guided to hit each of the two gratings and can detect six-DOF motions simultaneously and independently. For each probe, the incident beam propagates through both a three-axes grating interferometry module and a three-axes diffraction integrated autocollimator-module, which detects translational and rotational movement, respectively. By combining the two modules it is possible to perform six-DOF measurement for a single point. The common-path configuration of the two probes enable identical responses to environmental variation, which ensures high accuracy.
- Published
- 2021
- Full Text
- View/download PDF
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