Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions

碩士 === 國立臺北科技大學 === 電腦與通訊研究所 === 97 === A novel broadband antenna miniaturization is presented in this thesis. The antenna is proposed for operating at whole world DTV reception band (470 MHz ~ 860 MHz). This antenna used the 50 Ω microstip line to feed, In microstip line’s ground plane slotting let...

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Main Authors: Peng-Shu Chen, 陳鵬書
Other Authors: 林丁丙
Format: Others
Language:zh-TW
Published: 2009
Online Access:http://ndltd.ncl.edu.tw/handle/qa4a7n
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spelling ndltd-TW-097TIT056520012019-08-03T15:50:13Z http://ndltd.ncl.edu.tw/handle/qa4a7n Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions 應用於數位電視接收機之螺旋多模態諧振微型化天線 Peng-Shu Chen 陳鵬書 碩士 國立臺北科技大學 電腦與通訊研究所 97 A novel broadband antenna miniaturization is presented in this thesis. The antenna is proposed for operating at whole world DTV reception band (470 MHz ~ 860 MHz). This antenna used the 50 Ω microstip line to feed, In microstip line’s ground plane slotting let microstip line return current path increase to radiation effect. To achieve broadband structure, the proposed antenna is composed of seven resonances path in the ground plane. To achieve compact structure, the proposed antenna is use signal line and ground plane coupling induce the capacitance effect. The impedance matching and bandwidth for the presented antenna are mainly affected by sheet metal on signal line. The antenna can get omnidirectional radiation pattern in the whole frequency band. The measurement result is agree with simulation. In order to enhance receiver receiving performance for this antenna in DTV signal receptions, the LNA is used to increase the receiving signal power intensity. Finally, the LNA be fabricated and integrated in the ground plane to prove the receiver signal power intensity by practical measurement. The designed antenna with overall size of only 20 × 20 × 0.8 mm3, and combined the LNA overall size of only 20 × 30 × 0.8 mm3. 林丁丙 2009 學位論文 ; thesis 53 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺北科技大學 === 電腦與通訊研究所 === 97 === A novel broadband antenna miniaturization is presented in this thesis. The antenna is proposed for operating at whole world DTV reception band (470 MHz ~ 860 MHz). This antenna used the 50 Ω microstip line to feed, In microstip line’s ground plane slotting let microstip line return current path increase to radiation effect. To achieve broadband structure, the proposed antenna is composed of seven resonances path in the ground plane. To achieve compact structure, the proposed antenna is use signal line and ground plane coupling induce the capacitance effect. The impedance matching and bandwidth for the presented antenna are mainly affected by sheet metal on signal line. The antenna can get omnidirectional radiation pattern in the whole frequency band. The measurement result is agree with simulation. In order to enhance receiver receiving performance for this antenna in DTV signal receptions, the LNA is used to increase the receiving signal power intensity. Finally, the LNA be fabricated and integrated in the ground plane to prove the receiver signal power intensity by practical measurement. The designed antenna with overall size of only 20 × 20 × 0.8 mm3, and combined the LNA overall size of only 20 × 30 × 0.8 mm3.
author2 林丁丙
author_facet 林丁丙
Peng-Shu Chen
陳鵬書
author Peng-Shu Chen
陳鵬書
spellingShingle Peng-Shu Chen
陳鵬書
Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions
author_sort Peng-Shu Chen
title Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions
title_short Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions
title_full Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions
title_fullStr Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions
title_full_unstemmed Spiral and Multimode Antenna Miniaturization for DTV Signal Receptions
title_sort spiral and multimode antenna miniaturization for dtv signal receptions
publishDate 2009
url http://ndltd.ncl.edu.tw/handle/qa4a7n
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