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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Maximum Achievable Power Conversion Efficiency Obtained Through an Optimized Rectenna Structure for RF Energy Harvesting
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Maximum Achievable Power Conversion Efficiency Obtained Through an Optimized Rectenna Structure for RF Energy Harvesting

机译:通过优化的Rectenna结构获得最大的可实现功率转换效率,用于RF能量收集

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摘要

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 limit of PCE has not yet been characterized, and the optimal rectenna structure approaching such maximum PCE is still uninvestigated. In this paper, we characterize the performance limit of rectennas with input power ranging from -20 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 topologies, and parameterization. To achieve the maximum PCE, our investigation shows that the optimal rectenna structure should not only optimize those design factors but also eliminate the matching circuit between an antenna and a rectifier for ultralow-power scenarios. The resultant PCE at 2.45 GHz is 61.4% and 31.8% at -5 and -15 dBm, respectively, closely approaching the theoretical bound.
机译:用于射频(RF)能量收集的高效整流天线已有数十年的研究历史,但是即使输入功率水平明显不同,大多数文献也直接将针对专用RF源的整流天线应用于这种情况。由于先前的研究涉及收集更多环境RF功率的天线设计,因此,由于尚未表征PCE的理论极限,并且接近该最大PCE的最佳整流天线结构为零,因此以零散的方式出现了功率转换效率(PCE)的提高。仍未调查。在本文中,我们表征了输入功率在-20至0 dBm范围内的整流天线的性能极限,提出了最佳的整流天线设计,以证明其最大PCE。最大可实现的PCE被转化为数学编程问题。解决此优化模型可以阐明设计因素的影响,包括工作频率,整流器拓扑和参数化。为了获得最大的PCE,我们的研究表明,最佳的整流天线结构不仅应优化那些设计因素,而且还应消除天线和整流器之间的匹配电路,以实现超低功耗方案。在5.45和-15 dBm时,在2.45 GHz下得到的PCE分别为61.4%和31.8%,接近理论极限。

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