基于全球导航卫星系统(global navigation satellite system,GNSS)接收机射频前端增益大小引起的抗干扰能力与模数转换器(analog to digital converter,ADC)量化损耗之间的矛盾问题,提出一种抗干扰性能约束下的最优前端增益设计方法。首...基于全球导航卫星系统(global navigation satellite system,GNSS)接收机射频前端增益大小引起的抗干扰能力与模数转换器(analog to digital converter,ADC)量化损耗之间的矛盾问题,提出一种抗干扰性能约束下的最优前端增益设计方法。首先,建立射频通道、ADC的数学模型。然后,分析在无干扰情况下前端增益对信号采样的影响、干扰条件下的抗干扰极限性能。最后,针对前端增益对信号接收与抗干扰性能之间的矛盾,以抗干扰性能为优化目标提出了最优的前端增益设计方法。仿真实测结果验证了本文分析结论的准确性和提出方法的有效性。展开更多
An aperture design technique using multi-step amplitude quantization for two-dimensional solid-state active phased arrays to achieve low sidelobe is described. It can be applied to antennas with arbitrary complex aper...An aperture design technique using multi-step amplitude quantization for two-dimensional solid-state active phased arrays to achieve low sidelobe is described. It can be applied to antennas with arbitrary complex aperture. Also, the gain drop and sidelobe degradation due to random amplitude and phase errors and element (or T/R module) failures are investigated.展开更多
文摘基于全球导航卫星系统(global navigation satellite system,GNSS)接收机射频前端增益大小引起的抗干扰能力与模数转换器(analog to digital converter,ADC)量化损耗之间的矛盾问题,提出一种抗干扰性能约束下的最优前端增益设计方法。首先,建立射频通道、ADC的数学模型。然后,分析在无干扰情况下前端增益对信号采样的影响、干扰条件下的抗干扰极限性能。最后,针对前端增益对信号接收与抗干扰性能之间的矛盾,以抗干扰性能为优化目标提出了最优的前端增益设计方法。仿真实测结果验证了本文分析结论的准确性和提出方法的有效性。
文摘An aperture design technique using multi-step amplitude quantization for two-dimensional solid-state active phased arrays to achieve low sidelobe is described. It can be applied to antennas with arbitrary complex aperture. Also, the gain drop and sidelobe degradation due to random amplitude and phase errors and element (or T/R module) failures are investigated.