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Microwave and millimeter-wave rectifying circuit arrays and ultra-wideband antennas for wireless power transmission and communications .

机译:用于无线电力传输和通信的微波和毫米波整流电路阵列和超宽带天线。

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摘要

In the future, space solar power transmission and wireless power transmission will play an important role in gathering clean and infinite energy from space. The rectenna, i.e., a rectifying circuit combined with an antenna, is one of the most important components in the wireless power transmission system. To obtain high power and high output voltage, the use of a large rectenna array is necessary.; Many novel rectennas and rectenna arrays for microwave and millimeter-wave wireless power transmission have been developed. Unlike the traditional rectifying circuit using a single diode, dual diodes are used to double the DC output voltage with the same circuit layout dimensions. The rectenna components are then combined to form rectenna arrays using different interconnections. The rectennas and the arrays are analyzed by using a linear circuit model. Furthermore, to precisely align the mainbeams of the transmitter and the receiver, a retrodirective array is developed to maintain high efficiency. The retrodirective array is able to track the incident wave and resend the signal to where it came from without any prior known information of the source location.; The ultra-wideband radio has become one of the most important communication systems because of demand for high data-rate transmission. Hence, ultra-wideband antennas have received much attention in mobile wireless communications. Planar monopole ultra-wideband antennas for UHF, microwave, and millimeter-wave bands are developed, with many advantages such as simple structure, low cost, light weight, and ease of fabrication. Due to the planar structures, the ultra-wideband antennas can be easily integrated with other circuits. On the other hand, with an ultra-wide bandwidth, source power can be transmitted at different frequencies dependent on power availability. Furthermore, the ultra-wideband antenna can potentially handle wireless power transmission and data communications simultaneously. The technologies developed can also be applied to dual-frequency or the multi-frequency antennas.; In this dissertation, many new rectenna arrays, retrodirective rectenna arrays, and ultra-wideband antennas are presented for microwave and millimeter-wave applications. The technologies are not only very useful for wireless power transmission and communication systems, but also they could have many applications in future radar, surveillance, and remote sensing systems.
机译:未来,空间太阳能输电和无线电力输电将在收集来自太空的清洁无限能源方面发挥重要作用。整流天线,即与天线结合的整流电路,是无线电力传输系统中最重要的组件之一。为了获得高功率和高输出电压,必须使用大型整流天线阵列。已经开发出许多新颖的用于微波和毫米波无线电力传输的整流天线和整流天线阵列。与使用单个二极管的传统整流电路不同,使用两个二极管以相同的电路布局尺寸将直流输出电压加倍。然后使用不同的互连将整流天线组件合并以形成整流天线阵列。通过使用线性电路模型来分析整流天线和阵列。此外,为了精确对准发射器和接收器的主光束,开发了逆向阵列以保持高效率。逆向阵列能够跟踪入射波并将信号重新发送到其来源,而无需事先知道源位置的任何信息。由于对高数据速率传输的需求,超宽带无线电已成为最重要的通信系统之一。因此,超宽带天线在移动无线通信中受到了广泛的关注。已开发出用于UHF,微波和毫米波波段的平面单极超宽带天线,具有许多优点,例如结构简单,成本低,重量轻以及易于制造。由于采用平面结构,因此超宽带天线可以很容易地与其他电路集成在一起。另一方面,利用超宽带宽,可以根据电源可用性以不同的频率传输源功率。此外,超宽带天线可以潜在地同时处理无线电力传输和数据通信。开发的技术也可以应用于双频或多频天线。本文针对微波和毫米波应用提出了许多新型的整流天线阵列,定向整流天线阵列和超宽带天线。该技术不仅对无线电力传输和通信系统非常有用,而且在未来的雷达,监视和遥感系统中也有许多应用。

著录项

  • 作者

    Ren, Yu-Jiun.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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