Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting

碩士 === 國立臺北科技大學 === 電子工程系研究所 === 104 === High-efficiency rectennas for radio-frequency (RF) energy harvesting have been studied for decades, but most of the literature straightforwardly applies the rectenna aiming at dedicated RF sources to this situation, even though the level of input power is sig...

Full description

Bibliographic Details
Main Authors: Cheng-Wei Chiu, 邱證維
Other Authors: 陳晏笙
Format: Others
Online Access:http://ndltd.ncl.edu.tw/handle/vy9wx5
id ndltd-TW-104TIT05427058
record_format oai_dc
spelling ndltd-TW-104TIT054270582019-05-15T22:54:23Z http://ndltd.ncl.edu.tw/handle/vy9wx5 Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting 射頻能量擷取的轉換效率極限及達成此最大值的最佳整流天線架構 Cheng-Wei Chiu 邱證維 碩士 國立臺北科技大學 電子工程系研究所 104 High-efficiency rectennas for radio-frequency (RF) energy harvesting have been studied for decades, but most of the literature straightforwardly applies the rectenna aiming at dedicated RF sources to this situation, even though the level of input power is significantly different. Since previous studies address antenna design collecting more ambient RF power, the improvement of power conversion efficiency (PCE) has emerged in a scattered way because the theoretical limits of PCE have not yet been characterized, and the optimal rectenna structure approaching such maximum PCE is still uninvestigated. In this paper, we characterize the performance limits of rectennas with input power ranging from ‒20 dBm to 0 dBm, proposing optimal rectenna design demonstrating the maximum PCE. The maximum achievable PCE is cast into a mathematical programming problem; solving this optimization model clarifies the effect of design factors including operational frequencies, rectifier configurations, and parameterization. To achieve the maximum PCE, our investigation shows that the optimal rectenna design should not only optimize those design factors but also eliminate the matching circuit between an antenna and a rectifier for ultralow-power conditions. The resultant PCE at 2.4 GHz is 50 % and 63 % at –10 dBm and 0 dBm, closely approaching the theoretical bounds. 陳晏笙 學位論文 ; thesis 0
collection NDLTD
format Others
sources NDLTD
description 碩士 === 國立臺北科技大學 === 電子工程系研究所 === 104 === High-efficiency rectennas for radio-frequency (RF) energy harvesting have been studied for decades, but most of the literature straightforwardly applies the rectenna aiming at dedicated RF sources to this situation, even though the level of input power is significantly different. Since previous studies address antenna design collecting more ambient RF power, the improvement of power conversion efficiency (PCE) has emerged in a scattered way because the theoretical limits of PCE have not yet been characterized, and the optimal rectenna structure approaching such maximum PCE is still uninvestigated. In this paper, we characterize the performance limits of rectennas with input power ranging from ‒20 dBm to 0 dBm, proposing optimal rectenna design demonstrating the maximum PCE. The maximum achievable PCE is cast into a mathematical programming problem; solving this optimization model clarifies the effect of design factors including operational frequencies, rectifier configurations, and parameterization. To achieve the maximum PCE, our investigation shows that the optimal rectenna design should not only optimize those design factors but also eliminate the matching circuit between an antenna and a rectifier for ultralow-power conditions. The resultant PCE at 2.4 GHz is 50 % and 63 % at –10 dBm and 0 dBm, closely approaching the theoretical bounds.
author2 陳晏笙
author_facet 陳晏笙
Cheng-Wei Chiu
邱證維
author Cheng-Wei Chiu
邱證維
spellingShingle Cheng-Wei Chiu
邱證維
Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting
author_sort Cheng-Wei Chiu
title Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting
title_short Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting
title_full Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting
title_fullStr Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting
title_full_unstemmed Maximum Achievable Power Conversion Efficiency Obtained Through Optimized Rectenna Structures for RF Energy Harvesting
title_sort maximum achievable power conversion efficiency obtained through optimized rectenna structures for rf energy harvesting
url http://ndltd.ncl.edu.tw/handle/vy9wx5
work_keys_str_mv AT chengweichiu maximumachievablepowerconversionefficiencyobtainedthroughoptimizedrectennastructuresforrfenergyharvesting
AT qiūzhèngwéi maximumachievablepowerconversionefficiencyobtainedthroughoptimizedrectennastructuresforrfenergyharvesting
AT chengweichiu shèpínnéngliàngxiéqǔdezhuǎnhuànxiàolǜjíxiànjídáchéngcǐzuìdàzhídezuìjiāzhěngliútiānxiànjiàgòu
AT qiūzhèngwéi shèpínnéngliàngxiéqǔdezhuǎnhuànxiàolǜjíxiànjídáchéngcǐzuìdàzhídezuìjiāzhěngliútiānxiànjiàgòu
_version_ 1719137776292593664