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Integrated radar and communication waveform design based on a shared array~3

机译:基于共享阵列的集成雷达和通信波形设计〜3

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To reduce the consumption of spectrum and hardware resources, three methods are proposed to design the integrated radar and communication waveforms transmitted by a shared array. First, a minimum norm optimization (MNO) method is proposed to devise the transmit waveforms that can simultaneously synthesize desired radar and communication waveforms in different directions. The transmit beampattern formed by the designed waveforms has low sidelobe level (SLL). However, the designed waveforms may have high peak-to-average power ratio (PAPR). To reduce the PAPR, an iterative optimization (IO) method is proposed to devise the transmit waveforms with constant modulus. Then, to further reduce the SLL of the transmit beampattern formed by the designed constant modulus waveforms, the amplitude of each transmit waveform is iteratively optimized, which is referred to as iterative optimization with amplitude weighting (IO-AW) method. Finally, several numerical results show that the transmit waveforms designed by the proposed methods can simultaneously perform the radar and communication functions and can form the transmit beampattern with low SLL.
机译:为了降低频谱和硬件资源的消耗,提出了三种方法来设计由共享阵列发送的集成雷达和通信波形。首先,提出了最小规范优化(MNO)方法以设计可以在不同方向上同时合成所需雷达和通信波形的发射波形。由设计的波形形成的发射波束图案具有低侧链电平(SLL)。然而,设计的波形可能具有高峰平均功率比(PAPR)。为了减少PAPR,提出了一种迭代优化(IO)方法来设计具有恒定模量的发射波形。然后,为了进一步减少由所设计的恒定模量波形形成的发射波束图案的SLL,迭代地优化每个发射波形的幅度,其与幅度加权(IO-AW)方法称为迭代优化。最后,若干数值结果表明,由所提出的方法设计的发射波形可以同时执行雷达和通信功能,并且可以用低SLL形成发射波束图案。

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