Search Results - "Yu, D.C."

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  1. 1

    An Economic Dispatch Model Incorporating Wind Power by Hetzer, J., Yu, D.C., Bhattarai, K.

    Published in IEEE transactions on energy conversion (01-06-2008)
    “…In solving the electrical power systems economic dispatch (ED) problem, the goal is to find the optimal allocation of output power among the various generators…”
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  2. 2

    A novel optimal reactive power dispatch method based on an improved hybrid evolutionary programming technique by Wei Yan, Shuai Lu, Yu, D.C.

    Published in IEEE transactions on power systems (01-05-2004)
    “…This paper proposes an improved evolutionary programming (IEP) and its hybrid version combined with the nonlinear interior point (IP) technique to solve the…”
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  3. 3

    Probability distributions of outputs of stochastic economic dispatch by Shahirinia, A.H., Soofi, E.S., Yu, D.C.

    “…•A method to carry the uncertainty of wind speed for optimal S-ED problem presented.•The algorithm provides estimates of PDFs of the outputs of the S-ED…”
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    A new optimal reactive power flow model in rectangular form and its solution by predictor corrector primal dual interior point method by Wei Yan, Juan Yu, Yu, D.C., Bhattarai, K.

    Published in IEEE transactions on power systems (01-02-2006)
    “…A new optimal reactive power flow (ORPF) model in rectangular form is proposed in this paper. In this model, the load tap changing (LTC) transformer branch is…”
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  6. 6

    A unified three-phase transformer model for distribution load flow calculations by Peng Xiao, Yu, D.C., Wei Yan

    Published in IEEE transactions on power systems (01-02-2006)
    “…This paper provides a unified method to model three-phase transformers for distribution system load flow calculations, especially when the matrix singularity…”
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  7. 7

    Correction of current transformer distorted secondary currents due to saturation using artificial neural networks by Yu, D.C., Cummins, J.C., Zhudin Wang, Hong-Jun Yoon, Kojovic, L.A.

    Published in IEEE transactions on power delivery (01-04-2001)
    “…Current transformer saturation can cause protective relay misoperation or even prevent tripping. This paper presents the use of artificial neural networks…”
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  8. 8

    Fiber-Optics-Based Fault Detection in Power Systems by Law, C.T., Bhattarai, K., Yu, D.C.

    Published in IEEE transactions on power delivery (01-07-2008)
    “…A fiber-optics-based sensing network applicable for fault detection in power system is presented. The proposed scheme is secure and immune from interferences…”
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  9. 9

    Improved traveling wave protection method for MMCHVDC systems based on the tracking differentiator to resist uncertain interference by Yu, D.C., Zhou, N.C., Liao, J.Q., Wang, Q.G.

    Published in Electric power systems research (01-07-2022)
    “…•Strong fault protecting anti-interference capability.•Low operation time delay and high operation speed.•Effectively improve the reliability at high sampling…”
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  10. 10

    A practical approach to the conductor size selection in planning radial distribution systems by Zhuding Wang, Haijun Liu, Yu, D.C., Xiaohui Wang, Hongquan Song

    Published in IEEE transactions on power delivery (01-01-2000)
    “…This paper presents a new approach to the optimization problem of conductor size selection in planning radial distribution systems. In this study, a…”
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    Non-unit ultra-high-speed DC line protection method for HVDC grids using dynamic fitting algorithm with data reconstruction by Yu, D.C., Zhou, N.C., Liao, J.Q., Wang, Q.G., Wei, N.Q.

    “…•High fault protection accuracy.•Low operation time delay and high operation speed.•Strong anti-interference ability.•Low sampling rate requirement. Existing…”
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  13. 13

    Single-band near-infrared quantum cutting of Ho3+-Yb3+ codoped KLu2F7 phosphors by energy clustering by Yu, T., Yu, D.C., Lin, H.H., Zhang, Q.Y.

    Published in Journal of alloys and compounds (25-02-2017)
    “…A single-band near-infrared (NIR) quantum cutting (QC) is efficiently achieved for 1190 nm fluorescence by structuring Ho3+-Yb3+ couple as energy clustering in…”
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    Tumor-specific oncolytic adenoviruses expressing granulocyte macrophage colony-stimulating factor or anti-CTLA4 antibody for the treatment of cancers by Du, T, Shi, G, Li, Y M, Zhang, J F, Tian, H W, Wei, Y Q, Deng, H, Yu, D C

    Published in Cancer gene therapy (01-08-2014)
    “…The purpose of this study was to examine the tumor specificity, cytotoxicity and the antitumor activity of two conditionally replicating oncolytic…”
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    Efficient first-order resonant near-infrared quantum cutting in β-NaYF 4:Ho 3+,Yb 3 by Yu, D.C., Huang, X.Y., Ye, S., Zhang, Q.Y.

    Published in Journal of alloys and compounds (2011)
    “…[Display omitted] ► Near-infrared quantum cutting has been demonstrated in β-NaYF 4: Ho 3+, Yb 3+. ► Underlying mechanism for the two-photon quantum cutting is…”
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  18. 18

    Efficient near-infrared quantum splitting in YVO4:Ho3+ for photovoltaics by Yu, D.C., Huang, X.Y., Ye, S., Peng, M.Y., Zhang, Q.Y.

    Published in Solar energy materials and solar cells (01-06-2012)
    “…A sequential two-step near-infrared (NIR) quantum splitting (QS) has been demonstrated in a Ho3+-doped YVO4 phosphor, whereby one incident ultraviolet…”
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  19. 19

    The influence of different preparation methods on the microstructures and properties of the in situ bulk-metallic-glass-matrix composites by Meng, Y., Sha, P.F., Zhu, Z.W., Yu, D.C., Fu, H.M., Wang, A.M., Li, H., Zhang, H.W., Zhang, H.F.

    Published in Journal of materials research (28-02-2015)
    “…In this work, the effects of different preparation methods on the microstructures and properties of the Ti45.7Zr33Ni3Cu5.8Be12.5 alloy were systematically…”
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  20. 20

    Efficient near-infrared downconversion in GdVO 4:Dy 3+ phosphors for enhancing the photo-response of solar cells by Yu, D.C., Ye, S., Peng, M.Y., Zhang, Q.Y., Qiu, J.R., Wang, J., Wondraczek, L.

    “…Near-infrared (NIR) downconversion (DC) has been observed in a Dy 3+-doped GdVO 4 phosphor, where one ultraviolet-blue photon can be split efficiently into two…”
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