A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System
碩士 === 國立中興大學 === 資訊科學與工程學系所 === 98 === This thesis aims to design a miniaturize PIFA antenna for ZigBee module application. The goals for antenna are specified as low cost; miniaturized and easy to integrate with ZigBee module. Because of ZigBee module is an electric device and always compound into...
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ndltd-TW-098NCHU53940662015-10-30T04:05:19Z http://ndltd.ncl.edu.tw/handle/72469011872956864063 A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System IEEE 802.15.4 ZigBee PIFA天線模擬的方法論 Chien-Chou Hsu 徐健洲 碩士 國立中興大學 資訊科學與工程學系所 98 This thesis aims to design a miniaturize PIFA antenna for ZigBee module application. The goals for antenna are specified as low cost; miniaturized and easy to integrate with ZigBee module. Because of ZigBee module is an electric device and always compound into PCBA (Printed Circuit Board Assembly). The easiest way to approach the goal is to put designed antenna into PCBA directly. Then one can adopt transmission line as its port for signal feeding interface. Herein states antenna design and simulation process steps, and the signal port transformed from plane XZ to XY in order to connect with module output. To complete simulation and to figure out the differences between the design change as well. The goals are accomplished for matching to IEEE 802.15.4 ZigBee standards herein the radiator structure fine tuned respectively especially for working frequency. All of the fine tune activities were constrained in a limited board size as well. Then we can have a result to easy integrate with ZigBee module. In addition, experimental results for the proposed PIFA structures and simulations are presented and discussed. 黃德成 2010 學位論文 ; thesis 52 zh-TW |
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碩士 === 國立中興大學 === 資訊科學與工程學系所 === 98 === This thesis aims to design a miniaturize PIFA antenna for ZigBee module application. The goals for antenna are specified as low cost; miniaturized and easy to integrate with ZigBee module. Because of ZigBee module is an electric device and always compound into PCBA (Printed Circuit Board Assembly). The easiest way to approach the goal is to put designed antenna into PCBA directly. Then one can adopt transmission line as its port for signal feeding interface.
Herein states antenna design and simulation process steps, and the signal port transformed from plane XZ to XY in order to connect with module output. To complete simulation and to figure out the differences between the design change as well. The goals are accomplished for matching to IEEE 802.15.4 ZigBee standards herein the radiator structure fine tuned respectively especially for working frequency. All of the fine tune activities were constrained in a limited board size as well. Then we can have a result to easy integrate with ZigBee module.
In addition, experimental results for the proposed PIFA structures and simulations are presented and discussed.
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author2 |
黃德成 |
author_facet |
黃德成 Chien-Chou Hsu 徐健洲 |
author |
Chien-Chou Hsu 徐健洲 |
spellingShingle |
Chien-Chou Hsu 徐健洲 A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System |
author_sort |
Chien-Chou Hsu |
title |
A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System |
title_short |
A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System |
title_full |
A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System |
title_fullStr |
A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System |
title_full_unstemmed |
A 2.4GHz PIFA Antenna Simulation for IEEE 802.15.4 ZigBee System |
title_sort |
2.4ghz pifa antenna simulation for ieee 802.15.4 zigbee system |
publishDate |
2010 |
url |
http://ndltd.ncl.edu.tw/handle/72469011872956864063 |
work_keys_str_mv |
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