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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A Two-Port Multipolarization Rectenna With Orthogonal Hybrid Coupler for Simultaneous Wireless Information and Power Transfer (SWIPT)
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A Two-Port Multipolarization Rectenna With Orthogonal Hybrid Coupler for Simultaneous Wireless Information and Power Transfer (SWIPT)

机译:具有正交混合耦合器的双端口多极化indenNA,用于同时无线信息和电力传输(Swipt)

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摘要

A multipolarization rectenna, consisting of a two-port antenna fed by an orthogonal hybrid coupler and a medium-power rectifying circuit, is proposed. The orthogonal hybrid coupler has realized good isolation (S-12 or S-21 < -15 dB) between the two ports, which can be, respectively, connected to rectifying circuit and/or communication device for simultaneous wireless information and power transfer (SWIPT). Due to the symmetry of the coupler, the proposed rectenna can work at multipolarization modes, i.e., the circular polarization (CP) for the single-port operation and the linear polarization (LP) for the dual-port operation. Besides, a medium-power rectifying circuit is proposed, where its maximum radio frequency (RF) to direct current (dc) power conversion efficiencies is 53.6% (simulated) and 51.1% (experimental) at the input power of 0 and 0.5 dBm, respectively. By using the coupler, the conversion efficiency and impedance matching of the rectenna can be significantly improved. In addition, the power division between the two ports is considered at different modes. Compared with other rectennas, the proposed multifunctional rectenna has merits of multiple polarizations and multimode, which can therefore be used for the incoming waves in arbitrary polarization for SWIPT and cope with the uncertainty in real-world communication environments.
机译:提出了由由正交混合耦合器和中功率整流电路供给的双端口天线组成的多极化indenna。正交混合耦合器在两个端口之间实现了良好的隔离(S-12或S-21 <-15dB),它们可以分别连接到整流电路和/或用于同时无线信息和电力传输的通信设备(SWIPT )。由于耦合器的对称性,所提出的固定可以以多极化模式,即用于双端口操作的单端口操作的圆极化(CP)和用于双端口操作的线性偏振(LP)。此外,提出了一种中型电源整流电路,其中其最大射频(RF)直接电流(DC)功率转换效率为53.6%(模拟)和51.1%(实验),输入功率为0和0.5 dBm,分别。通过使用耦合器,可以显着改善intenna的转换效率和阻抗匹配。此外,两个端口之间的功率分割被认为是不同模式。与其他直线相比,所提出的多功能预烯纳具有多重偏振和多模的优点,因此可以用于求解和应对现实世界通信环境中的不确定性的任意极化中的入射波。

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