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Impulse Radio Ultra-Wide-Band Through Wall Imaging Radar Based on Multiple-Input Multiple-Output Antenna Arrays

机译:基于多输入多输出天线阵列的脉冲无线电超宽带穿墙成像雷达

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An Impulse Radio Ultra-Wide-Band (IR-UWB) Through Wall Imaging Radar (TWIR) employing linear MIMO antenna array, which is designed based on the effective array concept, is discussed in this study. An effective method to compute the signal travel time is also proposed. A major challenge of the IR-UWB TWIR is the cross-range resolution, which requires an antenna array with not only large operational bandwidth, but also certain aperture size. The real aperture array speeds up the data acquisition compared with Synthetic Aperture Radar (SAR), while it requires large number of elements and multiple channels in transceivers. To overcome this problem, Multiple-Input and Multiple-Output (MIMO) array is applied in the TWIR system. Effective array concept is used as the basis to design the MIMO array topology. Even though this concept is derived under narrow band far field condition firstly, it is demonstrated that it can be applied to the UWB near field TWIR. Performance of this MIMO array is investigated by TWIR image results. Numerical results showed that, the proposed MIMO array achieves the same resolution, lower side lobe level and lower artifacts, with much fewer antenna elements, as compared to the effective Single-Input and Multiple-Output (SIMO) array.
机译:本研究讨论了基于有效阵列概念设计的采用线性MIMO天线阵列的通过壁成像雷达(TWIR)的脉冲无线超宽带(IR-UWB)。还提出了一种计算信号传播时间的有效方法。 IR-UWB TWIR的主要挑战是跨范围分辨率,该分辨率要求天线阵列不仅具有较大的工作带宽,而且具有一定的孔径。与合成孔径雷达(SAR)相比,实际孔径阵列可加快数据采集速度,同时它在收发器中需要大量的元件和多个通道。为了克服这个问题,在TWIR系统中应用了多输入多输出(MIMO)阵列。有效的阵列概念被用作设计MIMO阵列拓扑的基础。即使这个概念首先是在窄带远场条件下得出的,但证明了它可以应用于UWB近场TWIR。通过TWIR图像结果研究了该MIMO阵列的性能。数值结果表明,与有效的单输入多输出(SIMO)阵列相比,提出的MIMO阵列具有相同的分辨率,较低的旁瓣电平和较低的伪像,并且天线元件更少。

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