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Doppler Radar with In-Band Full Duplex Radios

机译:带内全双工无线电的多普勒雷达

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The use of in-band full duplex (IBFD) is a promising improvement over classical TDD or FDD communication schemes. To enable IBFD radios, the electrical balance duplexer (EBD) has been proposed to suppress the direct self-interference (SI) at the RF stage. The remaining SI is typically assumed to be canceled further in the digital domain. In this paper, we show that the non-zero Doppler frequencies can be extracted from the residual SI, giving information about the speed of objects in the environment. As a result, an IBFD radio can be seen as a monostatic Doppler radar which is affected by the communication signal. This paper presents a detailed performance analysis of the different sources of interference affecting the Doppler radar. The performance is also evaluated using a radar-enhanced IBFD prototype consisting of a SDR module and an EBD designed to achieve up to 55 dB Tx-Rx isolation in the 1.74 GHz RF band. A measurable Doppler component is created by moving a 15 dBsm cone at known velocities at 0. 5-1.3 m from the prototype. For an EBD SI rejection of 45 dB, speeds in the range of 200 to 800 mm/s are detected with high accuracy.
机译:带内全双工(IBFD)的使用是对经典TDD或FDD通信方案的有希望的改进。为了启用IBFD无线电,已经提出了电平衡双工器(EBD)来抑制RF阶段的直接自干扰(SI)。通常假定剩余的SI在数字域中被进一步取消。在本文中,我们表明可以从残差SI中提取非零多普勒频率,从而提供有关环境中物体速度的信息。因此,IBFD无线电可以看作是受通信信号影响的单基地多普勒雷达。本文对影响多普勒雷达的不同干扰源进行了详细的性能分析。还使用由SDR模块和EBD组成的雷达增强IBFD原型来评估性能,该原型设计为在1.74 GHz射频波段实现高达55 dB的Tx-Rx隔离。可测量的多普勒分量是通过将15 dBsm圆锥体以已知速度从原型移至0. 5-1.3 m处而产生的。对于45 dB的EBD SI抑制,可以高精度检测200至800 mm / s的速度。

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