In this paper, we investigate the optimal design of a wireless-powered covert communication (WP-CC) system, in which a probabilistic accumulate-then-transmit (ATT) protocol is proposed to maximize the communication covertness subject to a quality-of-service (QoS) requirement on communication. Specifically, in the considered WP-CC system, a full-duplex (FD) receiver transmits artificial noise (AN) to simultaneously charge an energy-constrained transmitter and to confuse a warden's detection on the transmitter's communication activity. With the probabilistic ATT protocol, the transmitter sends its information with a prior probability, i.e., $p$, conditioned on the available energy being sufficient. Our analysis shows that the probabilistic ATT protocol can achieve higher covertness than the traditional ATT protocol with $p=1$. In order to facilitate the optimal design of the WP-CC system, we also derive the warden's minimum detection error probability and characterize the effective covert rate from the transmitter to the receiver to quantify the communication covertness and quality, respectively. The derived analytical results facilitate the joint optimization of the probability $p$ and the information transmit power. We further present the optimal design of a cable-powered covert communication (CP-CC) system as a benchmark for comparison. Our simulation shows that the proposed probabilistic ATT protocol (with a varying $p$) can achieve the covertness upper bound determined by the CP-CC system, while the traditional ATT protocol (with $p=1$) cannot, which again confirms the benefits brought by the proposed probabilistic ATT in covert communications.
翻译:在本文中,我们调查了无线动力秘密通信系统的最佳设计,在这种系统中,提出一种概率性累积-即时传送(ATT)协议,以最大限度地增加通信的隐蔽性,但须满足服务质量(QOS)对通信的要求。具体地说,在考虑的WP-CC系统中,一个全频接收器传输人工噪音(AN),以同时收取节能发射机的费用,混淆典长对发射机通信活动的检测。在概率性ATT协议中,发射机以先前的概率(即美元)发送信息,条件是现有能源充足。我们的分析表明,在考虑的WP-CC协议中,概率性协议可以达到比传统的ATT协议更高的隐蔽性,以美元=1美元。为了便于最佳设计WP-CC系统,我们还从典长处获得拟议的最低检测误差概率,并将有效隐蔽率从接收器接收器到对通信的隐蔽性和质量进行量化,即以美元为美元,而我们的分析结果显示,以目前的信息稳定度系统将实现最佳通信的概率,而我们则显示最佳通信的概率,以美元为最佳通信基准。