The integration of sensing and communication functionalities within a common system is one of the main innovation drivers for next-generation networks. In this paper, we introduce a quantum integrated sensing and communication (QISAC) protocol that leverages entanglement in quantum carriers of information to enable both superdense coding and quantum sensing. The proposed approach adaptively optimizes encoding and quantum measurement via variational circuit learning, while employing classical machine learning-based decoders and estimators to process the measurement outcomes. Numerical results for qudit systems demonstrate that the proposed QISAC protocol can achieve a flexible trade-off between classical communication rate and accuracy of parameter estimation.
翻译:在统一系统中集成传感与通信功能是下一代网络的主要创新驱动力之一。本文提出一种量子集成传感与通信(QISAC)协议,该协议利用量子信息载体的纠缠特性,同时实现超密编码与量子传感。所提方法通过变分电路学习自适应优化编码与量子测量,并采用基于经典机器学习的解码器与估计器处理测量结果。针对量子比特系统的数值实验表明,所提出的QISAC协议能够在经典通信速率与参数估计精度之间实现灵活权衡。