首页> 外文会议>European Microwave Conference >Photonic Analog-to-Digital Conversion of Microwave Signals Using Spectral-Interval Estimation
【24h】

Photonic Analog-to-Digital Conversion of Microwave Signals Using Spectral-Interval Estimation

机译:使用谱间隔估计的微波信号的光子模数转换

获取原文

摘要

Implementation of photonic analog-to-digital convertor (ADC) using an optimal way of information parallelizing at the level of circuit solutions can significantly improve the performance of the total system (signal source - ADC - computing device). Traditional approach for fast photonic ADC uses processing every time-neighbor sample of input signal by its own channel. For the input signals with limited bandwidth, another approach can be used, in which every input signal spectral interval is processed by its own channel, and the width of the spectral interval is adjusted with the performance of an electronic ADC used for digitizing. In many cases, output signals of electronic ADCs are sufficient for obtaining necessary information from the input signal without joint processing of the output signals of all channels; otherwise, outputs of all channels can be Fourier-processed and concatenated to get complete spectrum of a wideband microwave input signal. For realization of this scheme, a mode locked stable laser together with an amplitude modulator and two combs of narrow band optical filters can be used. Alternatively, a mode locked laser can be replaced with a continuous wave (CW) laser together with a number of optical modulators. Performance capabilities for signal ADC using spectral intervals are estimated. Parameters for optimal system operation are derived. It is shown that, for modern optical elements, 8-10 effective bits can be achieved in the digitized signal.
机译:使用最佳的信息并行化方法在电路解决方案级别上实现光子模数转换器(ADC),可以显着提高整个系统(信号源-ADC-计算设备)的性能。快速光子ADC的传统方法是通过其自己的通道处理输入信号的每个时间相邻样本。对于带宽有限的输入信号,可以使用另一种方法,其中每个输入信号的频谱间隔都由其自己的通道处理,并且频谱间隔的宽度可以通过用于数字化的电子ADC的性能进行调整。在许多情况下,电子ADC的输出信号足以从输入信号中获取必要的信息,而无需对所有通道的输出信号进行联合处理。否则,可以对所有通道的输出进行傅立叶处理并进行级联,以获得宽带微波输入信号的完整频谱。为了实现该方案,可以使用锁模稳定激光器以及振幅调制器和两束窄带光学滤波器。或者,锁模激光器可以用连续波(CW)激光器以及许多光学调制器代替。估计使用频谱间隔的信号ADC的性能。得出用于最佳系统操作的参数。结果表明,对于现代光学元件,在数字化信号中可以实现8-10个有效位。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号