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Full-Duplex Enabled Time-Efficient Device Discovery for Public Safety Communications

机译:用于公共安全通信的全双工省时设备发现

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Device-to-device (D2D) communications is the integral part of public safety (PS) communications. However, the most important requirement is the users' rapid discovery to timely communicate the emergency information. The existing half-duplex (HD) results in large time delays because it cannot transceive during same time slot. In-band full duplex (IB-FD) communications is an enabler to quickly discover the user because of simultaneous transmission and reception during same time-frequency block. In this paper, we proposed the frame structure for IB-FD system with prioritized PS users in resource allocation. Moreover, to improve spectral efficiency, time-efficient device discovery resource allocation (TE-DDRA) scheme has been proposed as well, where a user can switch the transmission mode from HD to IB-FD when the demand exceeds the available resources in HD mode. The proposal is validated by system-level simulations in terms of discovery time with conventional random access mode. The simulation results shows that with PS priority mode around 37% discovery time as compared with random access mode.
机译:设备到设备(D2D)通信是公共安全(PS)通信的组成部分。然而,最重要的要求是用户的快速发现以及时传达紧急信息。现有的半双工(HD)导致较大的时间延迟,因为它无法在同一时隙内收发。带内全双工(IB-FD)通信是使能者,因为在相同的时频块中同时进行发送和接收,因此可以快速发现用户。在本文中,我们提出了在资源分配中优先使用PS用户的IB-FD系统的帧结构。此外,为了提高频谱效率,还提出了省时的设备发现资源分配(TE-DDRA)方案,当需求超出HD模式下的可用资源时,用户可以将传输模式从HD切换到IB-FD。 。该建议已通过系统级仿真在常规随机访问模式下的发现时间上得到了验证。仿真结果表明,与随机访问模式相比,PS优先模式的发现时间约为37%。

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