Search Results - "Ning, Edward"

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  1. 1

    Energy-Efficient Base-Stations Sleep-Mode Techniques in Green Cellular Networks: A Survey by Wu, Jingjin, Zhang, Yujing, Zukerman, Moshe, Yung, Edward Kai-Ning

    Published in IEEE Communications surveys and tutorials (01-01-2015)
    “…Due to global climate change as well as economic concern of network operators, energy consumption of the infrastructure of cellular networks, or "Green…”
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    Journal Article
  2. 2

    A Low-Cost Printed CP Patch Antenna for RFID Smart Bookshelf in Library by Pui-Yi Lau, Yung, Kenneth Kin-On, Yung, Edward Kai-Ning

    “…This paper presents a small wideband circularly polarized patch antenna printed on the low-cost FR-4 material for radio-frequency-identification smart…”
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  3. 3

    The Backfire-to-Broadside Symmetrical Beam-Scanning Periodic Offset Microstrip Antenna by Yuanxin Li, Quan Xue, Yung, Edward Kai-Ning, Yunliang Long

    “…A backfire-to-broadside beam-scanning antenna with a periodic structure is described. The proposed antenna consists of the offset double-sided parallel-strip…”
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  4. 4

    Electromagnetic Scattering From General Bi-Isotropic Objects Using Time-Domain Integral Equations Combined With PMCHWT Formulations by Ze-Hai Wu, Yung, E. K-N, Dao-Xiang Wang, Jian Bao

    “…Electromagnetic scattering by general bi-isotropic objects is calculated by using the time-domain integral equations which are incorporated with the…”
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  5. 5

    Wideband Circularly Polarized Vertical Patch Antenna by Ze-Hai Wu, Yung, E.K.-N.

    “…A compact circularly polarized (CP) vertical patch antenna is presented that employs a microstrip to slot-line transition for a wideband operation. The antenna…”
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  6. 6

    Radiation patterns of microstrip leaky-wave antenna with parasitic elements by Li, YuanXin, Xue, Quan, Yung, Edward Kai-Ning, Long, YunLiang

    Published in Microwave and optical technology letters (01-06-2008)
    “…A microstrip leaky‐wave antenna (MLWA) with parasitic elements is presented in this letter. The short MLWA is the basic element, and two microstrip patches…”
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  7. 7

    The Periodic Half-Width Microstrip Leaky-Wave Antenna With a Backward to Forward Scanning Capability by Yuanxin Li, Quan Xue, Yung, E.K.-N., Yunliang Long

    “…The periodic half-width microstrip leaky wave antenna (MLWA) with a backward to forward scanning capability is presented in this paper. The proposed antenna…”
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  8. 8

    Microstrip leaky-wave antenna with beam-patterns switchable capability by Li, Yuanxin, Xue, Quan, Yung, Edward Kai-Ning, Long, Yunliang

    Published in Microwave and optical technology letters (01-12-2007)
    “…A beam‐patterns switchable microstrip leaky‐wave antenna (MLWA) is presented in this letter. A new feeding configuration of MLWA has been shown. MLWA fed with…”
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  9. 9

    An efficient method to analyze the H-plane waveguide junction circulator with a ferrite sphere by Chen, Ru-Shan, Yung, Edward Kai-Ning

    “…This paper presents an approximate, but efficient field treatment of the new easy-to-fabricate ferrite-sphere-based H-plane waveguide circulator for…”
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  10. 10

    Scattering by conducting sphere coated with chiral media by Yung, Edward Kai-Ning, Hu, Bin-Jie

    Published in Microwave and optical technology letters (20-11-2002)
    “…Scattering of a plane wave with linear polarization by a chiral‐coating conducting sphere is presented. The expressions for the expansion coefficients of…”
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  11. 11

    A single-feed TM21-mode circular patch antenna with circular polarization by Du, Biao, Yung, Edward Kai-Ning

    Published in Microwave and optical technology letters (05-05-2002)
    “…A single‐feed TM21‐mode circular patch antenna with circular polarization (CP) is proposed and investigated. The operating condition for CP in the antenna is…”
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  12. 12
  13. 13

    Input impedance of a coaxial-line fed probe in a thick coaxial-line waveguide by Yung, Edward Kai-Ning, Xie, Ze Ming, Chen, Ru Shan

    “…The Green's functions for determining the electromagnetic fields inside a semiinfinite coaxial line due to a radially directed, infinitesimally thin, and…”
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  14. 14
  15. 15

    On the computing algorithms of the hybrid FEM/MLFMA by Sheng, Xin-Qing, Yung, Edward Kai-Ning

    Published in Microwave and optical technology letters (20-05-2002)
    “…Several computing algorithms of the hybrid FEM/MLFMA, the conventional algorithm (CA), the direct–iterative decomposition algorithm (DIDA), and a new one, the…”
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  16. 16

    Dual-Beam Steering Microstrip Leaky Wave Antenna With Fixed Operating Frequency by Yuanxin Li, Quan Xue, Yung, E.K.-N., Yunliang Long

    “…A fixed-frequency dual-beam steering microstrip leaky-wave antenna is presented in this paper. A novel equation with finite-difference time-domain method is…”
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  17. 17

    Quasi Microstrip Leaky-Wave Antenna With a Two-Dimensional Beam-Scanning Capability by Yuanxin Li, Quan Xue, Yung, E.K.-N., Yunliang Long

    “…A quasi microstrip leaky-wave antenna (QMLWA) with a two-dimensional (2-D) beam-scanning capability is presented in this paper. QMLWA consists of two…”
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  18. 18

    A New Method for Locating the Poles of Green's Functions in a Lossless or Lossy Multilayered Medium by Dao-Xiang Wang, Yung, Edward Kai-Ning, Ru-Shan Chen, Jian Bao

    “…A new method is presented to locate the poles of the Green's functions for a general multilayered medium, whether lossy or lossless. The problem associated…”
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  19. 19

    Application of the SSOR preconditioned CG algorithm to the vector FEM for 3D full-wave analysis of electromagnetic-field boundary-value problems by Ru-Shan Chen, Edward Kai-Ning Yung, Chan, C.H., Dao Xiang Wang, Da Gang Fang

    “…The symmetric successive overrelaxation (SSOR) preconditioning scheme is applied to the conjugate-gradient (CG) method for solving a large system of linear…”
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  20. 20

    Scattering by Conducting Bodies Coated With Bi-Isotropic Materials by Wang, Dao-Xiang, Lau, Pui Yi, Yung, Edward Kai-Ning, Chen, Ru-Shan

    “…Electromagnetic scattering by arbitrarily shaped conducting bodies coated with general bi-isotropic materials is formulated in terms of the surface integral…”
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