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Synchronization signal design and hierarchical detection for the D2D sidelink

机译:D2D侧链的同步信号设计和分层检测

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Device-to-device (D2D) communication is considered as a key component in existing and future cellular networks. Safety and emergency applications must be served by the so-called ultra-reliable low-latency communication (URLLC). To this end, reliable fast synchronization and user identification are required for link establishment and dynamic topology estimation. In this work we propose a framework for sequence generation, which encapsulates additional information, e.g. the type of synchronization source used by a transmitting user, whether the user obtains this reference directly or over another user, etc. Such information allows the receiver to prioritize and accordingly weight different synchronization signals based on the source type and achieve thus faster and more reliable synchronization. Receiver-side and distributed synchronization algorithms are described and evaluated for typical D2D scenarios. It is shown that both receiver-side as well as global synchronization can be achieved with high accuracy.
机译:设备到设备(D2D)通信被认为是现有和未来蜂窝网络中的关键组件。安全和紧急应用必须由所谓的超可靠的低延迟通信(URLLC)提供服务。为此,链路建立和动态拓扑估计需要可靠的快速同步和用户标识。在这项工作中,我们提出了用于序列生成的框架,该框架封装了其他信息,例如发射用户使用的同步源的类型,无论用户是直接获得此参考还是通过另一个用户获得的参考,等等。此类信息使接收器可以根据源类型对优先级进行区分,并对不同的同步信号进行加权,从而更快,更可靠地实现同步。描述了接收器端和分布式同步算法,并针对典型的D2D场景进行了评估。结果表明,可以高精度地实现接收机侧以及全局同步。

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