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ECCM Schemes against Deception Jamming Using OFDM Radar with Low Global PAPR

机译:ECCM方案使用低全局PAPR的OFDM雷达防止欺骗干扰

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摘要

In this paper, a type of effective electronic counter-countermeasures (ECCM) technique for suppressing the high-power deception jamming using an orthogonal frequency division multiplexing (OFDM) radar is proposed. Concerning the velocity deception jamming, the initial phases of the pulses transmitted in a coherent processing interval (CPI) are designed to minimize the jamming power within a specific range, forming a notch around the jamming in the Doppler spectrum. For the purpose of suppressing the range deception jamming and the joint range-velocity deception jamming, the phase codes of the subcarriers belonging to the OFDM pulses are optimized to minimize the jamming power, distributing some specific bands in the range and the range-velocity domain, respectively. According to Parseval’s theorem, the phase encoding, acting as the coding manner of the OFDM subcarriers can ensure that the energy of each OFDM symbol stays the same. It is worth noticing that the phase codes of the OFDM subcarriers can influence the peak-to-average power ratio (PAPR). Thus, an optimization problem is formulated to optimize the phase codes of the subcarriers under the constraint of global PAPR, which can regulate the PAPRs of multiple OFDM symbols at the same time. The proposed problem is non-convex; therefore, it is a huge challenge to tackle. Then we present a method named by the phase-only alternating direction method multipliers (POADMM) to solve the aforementioned optimization problem. Some necessary simulation results are provided to demonstrate the effectiveness of the proposed radar signaling strategy
机译:本文提出了一种使用正交频分复用(OFDM)雷达来抑制高功率欺骗干扰的有效电子对抗(ECCM)技术。关于速度欺骗干扰,在相干处理间隔(CPI)中传输的脉冲的初始相位被设计为在特定范围内将干扰功率最小化,从而在多普勒频谱中围绕干扰形成一个陷波。为了抑制距离欺骗干扰和联合距离-速度欺骗干扰,对属于OFDM脉冲的子载波的相位代码进行了优化,以最大程度地减小干扰功率,在范围和距离-速度域中分配一些特定的频带。 , 分别。根据Parseval定理,相位编码作为OFDM子载波的编码方式,可以确保每个OFDM符号的能量保持不变。值得注意的是,OFDM子载波的相位码会影响峰均功率比(PAPR)。因此,提出了在全局PAPR的约束下优化子载波相位码的优化问题,可以同时调节多个OFDM符号的PAPR。提出的问题是非凸的;因此,这是一个巨大的挑战。然后,我们提出了一种仅用相位交替方向方法乘法器(POADMM)命名的方法来解决上述优化问题。提供了一些必要的仿真结​​果,以证明所提出的雷达信令策略的有效性

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