Zhanhang Wei, Yingyu Chen, Yichang Wu, Hanyu Gao, Ruqi Chen, Tianrui Li, Shanyong Li, Jiao Chai, Zhaohui Li, Chao Lu
Integrated sensing and communication (ISAC) systems enable communication while concurrently endowing optical fiber with sensing capability, utilizing telecommunication networks to detect signals such as traffic. Multi-core fiber provides abundant exploitable spatial channels for ISAC systems. This work proposes a space division multiplexing distributed acoustic sensing (SDM-DAS) scheme for ISAC. By leveraging multi-component sensing signals transmitted through multiple fiber cores, SDM-DAS achieves a sensing sensitivity of 1.78p ε /Hz at 10 km under a spatial resolution of 20 m. It also demonstrates a 10 dB suppression in fading noise and a detection bandwidth three times greater than that of conventional DAS. The system employs space and wavelength division multiplexing to enable co-propagation of communication and sensing signals within individual cores of a 16.5 km field-deployed seven-core fiber, achieving real-time traffic transmission with a net capacity of 117 Tb/s. Experimental results show that the setup introduces no inter-core crosstalk and does not degrade the bit error rate of the concurrently operating communication system. Furthermore, the proposed ISAC system integrating SDM-DAS successfully detects vibration signals from vehicular traffic and metro operations in real-world field deployment.