Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers
碩士 === 國立中正大學 === 電機工程研究所 === 104 === An accurate phasor-sum method is proposed for the built-in detection of relative phase and amplitude between neighboring RF chains in phased array systems. The phasor sum of two RF signals provides a distinct amplitude-phase trigonometric relationship, from whic...
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ndltd-TW-104CCU004420742019-05-15T22:43:58Z http://ndltd.ncl.edu.tw/handle/zb8yvz Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers 應用於相位陣列收發機之內建式訊號相位與振幅檢測系統電路設計 YANG, YUE-FONG 楊岳峰 碩士 國立中正大學 電機工程研究所 104 An accurate phasor-sum method is proposed for the built-in detection of relative phase and amplitude between neighboring RF chains in phased array systems. The phasor sum of two RF signals provides a distinct amplitude-phase trigonometric relationship, from which the relative phase can be determined solely by the signal amplitudes. However, the amplitude distortion, attributed from the impedance mismatch or nonlinearity of detection circuits and devices, introduces considerable phase error. In our proposed method, the amplitude distortion error is first eliminated and then the phase error is significantly reduced. The measurement results of a 3-GHz four-chain RF array demonstrate that the root-mean-square phase error is less than 3.2°over the entire 0°to 180°range and the power error is less than 0.3 dB.And the measurement results of 15-GHz eight-chain RF array demonstratethat the root-mean square phase error is 7.07°andthe power error is 0.26 dB. CHANG, SHENG-FUH 張盛富 2016 學位論文 ; thesis 57 zh-TW |
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碩士 === 國立中正大學 === 電機工程研究所 === 104 === An accurate phasor-sum method is proposed for the built-in detection of relative phase and amplitude between neighboring RF chains in phased array systems. The phasor sum of two RF signals provides a distinct amplitude-phase trigonometric relationship, from which the relative phase can be determined solely by the signal amplitudes. However, the amplitude distortion, attributed from the impedance mismatch or nonlinearity of detection circuits and devices, introduces considerable phase error. In our proposed method, the amplitude distortion error is first eliminated and then the phase error is significantly reduced. The measurement results of a 3-GHz four-chain RF array demonstrate that the root-mean-square phase error is less than 3.2°over the entire 0°to 180°range and the power error is less than 0.3 dB.And the measurement results of 15-GHz eight-chain RF array demonstratethat the root-mean square phase error is 7.07°andthe power error is 0.26 dB.
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author2 |
CHANG, SHENG-FUH |
author_facet |
CHANG, SHENG-FUH YANG, YUE-FONG 楊岳峰 |
author |
YANG, YUE-FONG 楊岳峰 |
spellingShingle |
YANG, YUE-FONG 楊岳峰 Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers |
author_sort |
YANG, YUE-FONG |
title |
Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers |
title_short |
Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers |
title_full |
Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers |
title_fullStr |
Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers |
title_full_unstemmed |
Design of Built-in Phase and Amplitude Detection System for Phased-Array Transceivers |
title_sort |
design of built-in phase and amplitude detection system for phased-array transceivers |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/zb8yvz |
work_keys_str_mv |
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