Position Tolerance Design Method for Array Antenna in Internet of Things
The position error of array antenna significantly deteriorates the gain and sidelobe of the array, which seriously hinders the realization of high performance of communication antenna for Internet of Things (IoT). Based on the sensitivity analysis theory, the sensitivity of the array radiation field...
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doaj-a845691975a7480997b2e8bb6abe9b0f2020-11-24T21:26:40ZengHindawi-WileyWireless Communications and Mobile Computing1530-86691530-86772018-01-01201810.1155/2018/75740417574041Position Tolerance Design Method for Array Antenna in Internet of ThingsCongsi Wang0Shuai Yuan1Xiaodong Yang2Wei Gao3Cheng Zhu4Zhihai Wang5Shaoxi Wang6Xuelin Peng7Key Laboratory of Electronic Equipment Structure Design, Ministry of Education, Xidian University, Xi’an 710071, ChinaKey Laboratory of Electronic Equipment Structure Design, Ministry of Education, Xidian University, Xi’an 710071, ChinaSchool of Electronic Engineering, Xidian University, Xi’an 710071, ChinaSchool of Civil and Environmental Engineering, University of New South Wales, Sydney, NSW 2052, AustraliaNational Key Laboratory of Antennas and Microwave Technology, Xidian University, Xi’an 710071, ChinaCETC No. 38 Research Institute, Hefei 230088, ChinaSchool of Software and Microelectronics, Northwestern Polytechnical University, Xi’an 710072, ChinaNanjing Research Institute of Electronics Technology, Nanjing 210039, ChinaThe position error of array antenna significantly deteriorates the gain and sidelobe of the array, which seriously hinders the realization of high performance of communication antenna for Internet of Things (IoT). Based on the sensitivity analysis theory, the sensitivity of the array radiation field with respect to the position of the antenna element is derived. Besides, a novel design method of position tolerance for array antenna is proposed and applied to a 20×20 planar array. Compared with the array designed by traditional method, the gain loss is basically the same (being 0.5 dB), while the peak sidelobe level is lowered by 1.937 dB (φ=0°)/1.586 dB (φ=90°). Besides, the uncertainty analysis results show that the newly designed array has a much higher chance to achieve the desired performance, which fully demonstrates the innovation and effectiveness of the new method.http://dx.doi.org/10.1155/2018/7574041 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Congsi Wang Shuai Yuan Xiaodong Yang Wei Gao Cheng Zhu Zhihai Wang Shaoxi Wang Xuelin Peng |
spellingShingle |
Congsi Wang Shuai Yuan Xiaodong Yang Wei Gao Cheng Zhu Zhihai Wang Shaoxi Wang Xuelin Peng Position Tolerance Design Method for Array Antenna in Internet of Things Wireless Communications and Mobile Computing |
author_facet |
Congsi Wang Shuai Yuan Xiaodong Yang Wei Gao Cheng Zhu Zhihai Wang Shaoxi Wang Xuelin Peng |
author_sort |
Congsi Wang |
title |
Position Tolerance Design Method for Array Antenna in Internet of Things |
title_short |
Position Tolerance Design Method for Array Antenna in Internet of Things |
title_full |
Position Tolerance Design Method for Array Antenna in Internet of Things |
title_fullStr |
Position Tolerance Design Method for Array Antenna in Internet of Things |
title_full_unstemmed |
Position Tolerance Design Method for Array Antenna in Internet of Things |
title_sort |
position tolerance design method for array antenna in internet of things |
publisher |
Hindawi-Wiley |
series |
Wireless Communications and Mobile Computing |
issn |
1530-8669 1530-8677 |
publishDate |
2018-01-01 |
description |
The position error of array antenna significantly deteriorates the gain and sidelobe of the array, which seriously hinders the realization of high performance of communication antenna for Internet of Things (IoT). Based on the sensitivity analysis theory, the sensitivity of the array radiation field with respect to the position of the antenna element is derived. Besides, a novel design method of position tolerance for array antenna is proposed and applied to a 20×20 planar array. Compared with the array designed by traditional method, the gain loss is basically the same (being 0.5 dB), while the peak sidelobe level is lowered by 1.937 dB (φ=0°)/1.586 dB (φ=90°). Besides, the uncertainty analysis results show that the newly designed array has a much higher chance to achieve the desired performance, which fully demonstrates the innovation and effectiveness of the new method. |
url |
http://dx.doi.org/10.1155/2018/7574041 |
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