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Spectrally Compatible Waveform Design for MIMO Radar With ISL and PAPR Constraints

机译:具有ISL和PAPR约束的MIMO雷达的光谱兼容波形设计

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This paper deals with the waveform design to ensure the spectrum co-existence between multiple-input multiple-output (MIMO) radar and communication systems. The transmit waveform energy of MIMO radar in the prescribed spatial-frequency domain is minimized to reduce the mutual interference induced by the overlaid communication services. Additionally, the integrated sidelobes level (ISL) and peak-to-average power ratio (PAPR) constraints are forced on the probing waveform. To tackle the resulting NP-hard problem, we first introduce several auxiliary variables to convert the fourth-order ISL constraint and the PAPR constraint into several quadratic constraints. Then, the recast problem is formulated into a new alternating direction method of multipliers (ADMM) form, with small-sized tractable subproblems solved sufficiently. Numerical simulations verify that the proposed algorithm outperforms another competitive method in terms of the convergence performance and also demonstrate that the designed waveform can achieve spatial-frequency nulling under the ISL and PAPR constraints.
机译:本文涉及波形设计,以确保多输入多输出(MIMO)雷达和通信系统之间的频谱共存。规定的空间频域中MIMO雷达的发射波形能量最小化以降低覆盖通信服务引起的相互干扰。另外,在探测波形上强制了集成的侧瓣级别(ISL)和峰值平均功率比(PAPR)约束。为了解决生成的NP难题,我们首先介绍几种辅助变量,将第四阶ISL约束和PAPR约束转换为几个二次约束。然后,重量问题被配制成乘法器(ADMM)形式的新交替方向方法,具有足够的小尺寸的船舶子问题。数值模拟验证所提出的算法在收敛性能方面优于另一种竞争方法,并且还证明了设计的波形可以在ISL和PAPR约束下实现空间频率效果。

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