LEADER 05417nam 2200661Ia 450 001 9910143188703321 005 20200520144314.0 010 $a1-280-54187-3 010 $a9786610541874 010 $a0-470-34757-0 010 $a0-471-46390-6 010 $a0-471-20066-2 035 $a(CKB)111087027110016 035 $a(EBL)470020 035 $a(OCoLC)53254646 035 $a(SSID)ssj0000080394 035 $a(PQKBManifestationID)11107961 035 $a(PQKBTitleCode)TC0000080394 035 $a(PQKBWorkID)10095335 035 $a(PQKB)10800590 035 $a(MiAaPQ)EBC470020 035 $a(EXLCZ)99111087027110016 100 $a19980707d1999 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aDesign of nonplanar microstrip antennas and transmission lines /$fKin-Lu Wong 210 $aNew York $cWiley$dc1999 215 $a1 online resource (388 p.) 225 1 $aWiley series in microwave and optical engineering 300 $a"A Wiley-Interscience publication." 311 $a0-471-18244-3 320 $aIncludes bibliographical references and index. 327 $aContents; Preface; 1 Introduction and Overview; 1.1 Introduction; 1.2 Cylindrical Microstrip Antennas; 1.2.1 Full-Wave Analysis; 1.2.2 Cavity-Model Analysis; 1.2.3 Generalized Transmission-Line Model Theory; 1.3 Spherical Microstrip Antennas; 1.4 Conical Microstrip Antennas; 1.5 Conformal Microstrip Arrays; 1.6 Conformal Microstrip Transmission Lines; References; 2 Resonance Problem of Cylindrical Microstrip Patches; 2.1 Introduction; 2.2 Cylindrical Rectangular Microstrip Patch with a Superstate; 2.2.1 Theoretical Formulation; 2.2.2 Galerkin's Moment-Method Formulation 327 $a2.2.3 Complex Resonant Frequency Results2.3 Cylindrical Rectangular Microstrip Patch with a Spaced Superstate; 2.3.1 Theoretical Formulation; 2.3.2 Resonance and Radiation Characteristics; 2.4 Cylindrical Rectangular Microstrip Patch with an Air Gap; 2.4.1 Complex Resonant Frequency Results; 2.5 Cylindrical Rectangular Microstrip Patch with a Coupling Slot; 2.5.1 Theoretical Formulation; 2.5.2 Resonance Characteristics; 2.6 Cylindrical Triangular Microstrip Patch; 2.6.1 Theoretical Formulation; 2.6.2 Complex Resonant Frequency Results; 2.7 Cylindrical Wraparound Microstrip Patch 327 $a2.7.1 Theoretical Formulation2.7.2 Complex Resonant Frequency Results; References; 3 Resonance Problem of Spherical Microstrip Patches; 3.1 Introduction; 3.2 Spherical Circular Microstrip Patch on a Uniaxial Substrate; 3.2.1 Fundamental Wave Equations in a Uniaxial Medium; 3.2.2 Spherical Wave Functions in a Uniaxial Medium; 3.2.3 Full-Wave Formulation for a Spherical Circular Microstrip Structure; 3.2.4 Galerkin's Moment-Method Formulation; 3.2.5 Basis Functions for Excited Patch Surface Current; 3.2.6 Resonance Characteristics; 3.2.7 Radiation Characteristics 327 $a3.2.8 Scattering Characteristics3.3 Spherical Annular-Ring Microstrip Patch; 3.3.1 Theoretical Formulation; 3.3.2 Complex Resonant Frequency Results; 3.4 Spherical Microstrip Patch with a Superstate; 3.4.1 Circular Microstrip Patch; 3.4.2 Annular-Ring Microstrip Patch; 3.5 Spherical Microstrip Patch with an Air Gap; 3.5.1 Circular Microstrip Patch; 3.5.2 Annular-Ring Microstrip Patch; References; 4 Characteristics of Cylindrical Microstrip Antennas; 4.1 Introduction; 4.2 Probe-Fed Case: Full-Wave Solution; 4.2.1 Rectangular Patch; 4.2.2 Triangular Patch 327 $a4.3 Probe-Fed Case: Cavity-Model Solution4.3.1 Rectangular Patch; 4.3.2 Triangular Patch; 4.3.3 Circular Patch; 4.3.4 Annular-Ring Patch; 4.4 Probe-Fed Case: Generalized Transmission-Line Model Solution; 4.4.1 Rectangular Patch; 4.4.2 Circular Patch; 4.4.3 Annular-Ring Patch; 4.5 Slot-Coupled Case: Full-Wave Solution; 4.5.1 Printed Slot as a Radiator; 4.5.2 Rectangular Patch with a Coupling Slot; 4.6 Slot-Coupled Case: Cavity-Model Solution; 4.6.1 Rectangular Patch; 4.6.2 Circular Patch; 4.7 Slot-Coupled Case: GTLM Solution; 4.7.1 Rectangular Patch; 4.7.2 Circular Patch 327 $a4.8 Microstrip-Line-Fed Case 330 $aA one-stop reference to the design and analysis of nonplanar microstrip structures. Owing to their conformal capability, nonplanar microstrip antennas and transmission lines have been intensely investigated over the past decade. Yet most of the accumulated research has been too scattered across the literature to be useful to scientists and engineers working on these curved structures. Now, antenna expert Kin-Lu Wong compiles and organizes the latest research results and other cutting-edge developments into an extensive survey of the characteristics of microstrip antennas mounted on 410 0$aWiley series in microwave and optical engineering. 606 $aStrip transmission lines$xDesign and construction 606 $aMicrostrip antennas$xDesign and construction 615 0$aStrip transmission lines$xDesign and construction. 615 0$aMicrostrip antennas$xDesign and construction. 676 $a621.381/331 676 $a621.381331 676 $a621.3824 700 $aWong$b Kin-Lu$0472687 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910143188703321 996 $aDesign of nonplanar microstrip antennas and transmission lines$91910740 997 $aUNINA