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Retrodirective phase-lock loop controlled phased array antenna for a solar power satellite system

机译:太阳能卫星系统的逆向锁相环控制相控阵天线

摘要

This thesis proposes a novel technique using a phase-lock loop (PLL) style phase control loop to achieve retrodirective phased array antenna steering. This novel approach introduces the concept of phase scaling and frequency translation. It releases the retrodirective transmit-receive frequency ratio from integer constraints and avoids steering approximation errors. The concept was developed to achieve automatic and precise beam steering for the solar power satellite (SPS). The testing was performed using a transceiver converting a pair of received 2.9 GHz signals down to 10 MHz, and up converting two 10 MHz signals to 5.8 GHz. Phase scaling and conjugation was performed at the 10 MHz IF using linear XOR phase detectors and a PLL loop to synthesize a 10 MHz signal with conjugate phase. A phase control loop design is presented using PLL design theory achieving a full 2π steering range. The concept of retrodirective beam steering is also presented in detail. Operational theory and techniques of the proposed method are presented. The prototype circuit is built and the fabrication details are presented. Measured performance is presented along with measurement techniques. Pilot phase detectors and PCL achieve good linearity as required. The achieved performance is benchmarked with standards derived from likely performance requirements of the SPS and beam steering of small versus large arrays are considered.
机译:本文提出了一种使用锁相环(PLL)式相位控制环的新技术,以实现定向相控阵天线的定向转向。这种新颖的方法引入了相位缩放和频率转换的概念。它从整数约束中释放了回溯性发射-接收频率比,并避免了转向近似误差。开发此概念的目的是实现太阳能卫星(SPS)的自动和精确波束转向。使用收发器将一对接收到的2.9 GHz信号下变频至10 MHz,然后将两个10 MHz信号上变频至5.8 GHz进行测试。使用线性XOR鉴相器和PLL环路在10 MHz IF上执行相位缩放和共轭,以合成具有共轭相位的10 MHz信号。利用PLL设计理论提出了一种相位控制回路设计,该设计可实现2π的整个转向范围。还详细介绍了定向射束转向的概念。提出了该方法的操作理论和技术。建立了原型电路,并给出了制造细节。测量性能与测量技术一起提供。先导相位检测器和PCL可根据需要实现良好的线性度。所达到的性能以源自SPS可能的性能要求的标准为基准,并考虑了小型阵列与大型阵列的光束转向。

著录项

  • 作者

    Kokel Samuel John;

  • 作者单位
  • 年度 2006
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
  • 中图分类

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