干扰
相移键控
计算机科学
正交调幅
波形
信噪比(成像)
调制(音乐)
卡姆
电子工程
干扰(通信)
无线
噪音(视频)
调幅
误码率
电信
频率调制
频道(广播)
带宽(计算)
声学
工程类
物理
人工智能
雷达
图像(数学)
热力学
作者
Bai Shi,Huaizong Shao,Jingran Lin,Wei Zhang
标识
DOI:10.1109/lwc.2022.3161137
摘要
Recently, unmanned aerial vehicles and Internet-of-Things devices have significantly facilitated daily life, but they can also pose serious threats to public security if maliciously used. An effective way to counteract these threats is to transmit interference signals to disrupt their wireless communication links. However, excessively complex jamming waveforms are difficult to be realized. In addition, due to the limited jamming power budget and the long distance between jammer and receiver, the jamming-to-noise-ratio (JNR) at the receiver may be low. Thus, the efficiency of jamming power is vital. The constant-envelope jamming waveform appears to be a promising solution to both problems. Therefore, we consider the commonly-used quadrature amplitude modulation (QAM) wireless system, and optimize the constant-envelope jamming waveform to maximize the error probability when JNR < signal-to-noise-ratio (SNR). This is a complicated non-convex problem that is difficult to solve directly. As a compromise, we seek a closed-form solution for a simplified version of it, which demonstrates that the simple binary phase shift keying (BPSK) is optimal. Numerical results confirm its superiority.
科研通智能强力驱动
Strongly Powered by AbleSci AI