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Yangyong Zhang

Publications and source records attributed to Yangyong Zhang.

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Last-Pair Swapping Polar Codes: A Structure to Improve Polarization under Finite-State Modulation

A novel structure of polar codes is proposed for finite-state modulation (FSM), in order to improve polarization under it, and approach the polarization efficiency that conventional polar codes achieve under memoryless channels. We choose a particular class of FSM for research, termed bijective FSM, and observe an explicit polarization loss under bijective FSM. To eliminate the loss, we propose a novel polar coding structure by substituting the last kernel of each layer in polar coding structure with a swapping matrix, thereby termed last-pair swapping structure. We prove that under bijective FSM the proposed structure achieves identical polarization efficiency with that of conventional one on memoryless channels, and exceeds that of conventional one under bijective FSM. Furthermore, we give a plausible generalization of last-pair swapping polar code: on a broader class termed sub-injective FSM. Simulation corroborates that under sub-injective FSM polarization efficiency of the proposed polar code exceeds that of conventional one. And simulation results of error rate are given on continuous phase modulation (CPM) with additional white Gaussian noise (AWGN) channels, showing a considerable signal-to-noise power ratio (snr) gain of last-pair swapping polar code over conventional one, and identical performances between the proposed polar code under bijective FSM and conventional one on memoryless channels.

cs.IT

Practical Speech Re-use Prevention in Voice-driven Services

Voice-driven services (VDS) are being used in a variety of applications ranging from smart home control to payments using digital assistants. The input to such services is often captured via an open voice channel, e.g., using a microphone, in an unsupervised setting. One of the key operational security requirements in such setting is the freshness of the input speech. We present AEOLUS, a security overlay that proactively embeds a dynamic acoustic nonce at the time of user interaction, and detects the presence of the embedded nonce in the recorded speech to ensure freshness. We demonstrate that acoustic nonce can (i) be reliably embedded and retrieved, and (ii) be non-disruptive (and even imperceptible) to a VDS user. Optimal parameters (acoustic nonce's operating frequency, amplitude, and bitrate) are determined for (i) and (ii) from a practical perspective. Experimental results show that AEOLUS yields 0.5% FRR at 0% FAR for speech re-use prevention upto a distance of 4 meters in three real-world environments with different background noise levels. We also conduct a user study with 120 participants, which shows that the acoustic nonce does not degrade overall user experience for 94.16% of speech samples, on average, in these environments. AEOLUS can therefore be used in practice to prevent speech re-use and ensure the freshness of speech input.

cs.SD