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首页> 外文期刊>Eurasip Journal on Wireless Communications and Networking >Device discovery for D2D communication in in-band cellular networks using sphere decoder like (SDL) algorithm
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Device discovery for D2D communication in in-band cellular networks using sphere decoder like (SDL) algorithm

机译:使用球体解码器如(SDL)算法在带内蜂窝网络中D2D通信的设备发现

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摘要

In the fifth generation (5G), it is anticipated that device-to-device (D2D) operation will be locally incorporated as a part without any bounds. In D2D network, multiple devices coexisting is a challenging subject of device discovery. The device discovery is performed under a visually impaired situation such as channel information, location, and the number of devices. In this paper, centralized device discovery is chosen due to power consumption and signaling overhead of the distributed system. A distinctive approach for device discovery in an in-band cellular network, based on the device's power, is suggested with an efficient technique which enhances the implementation of D2D communication and improves the accomplishment by alleviating the discovery issues. The group of devices forms a lattice structure, and it is positioned in the coverage area. The hypersphere is constructed based on the power knowledge of a discoverer device which helps for accurate and fast device discovery in a lattice structure. Besides, sphere decoder like (SDL) algorithm is applied for quick and precise discovery in the lattice structure. Simulation results present the performance of the proposed QR factorized lattice structure scheme regarding device power, enhanced in the number of discovered devices and controlled signaling overhead.
机译:在第五代(5G)中,预计设备到设备(D2D)操作将在本地结合为没有任何限制的部分。在D2D网络中,多个设备共存是一种具有挑战性的设备发现主题。设备发现在视觉受损的情况下执行,例如信道信息,位置和设备的数量。在本文中,由于分布式系统的功耗和信令开销,选择集中式设备发现。基于设备的电源,提出了一种基于设备的电源在带内蜂窝网络中的设备发现的独特方法,其有效技术通过减轻发现问题而增强了D2D通信的实现并提高了成就。设备组形成晶格结构,它位于覆盖区域。基于发现器装置的功率知识构建过度,这有助于在晶格结构中有助于精确和快速的设备发现。此外,在晶格结构中施加SPENERE解码器(SDL)算法以便在晶格结构中快速和精确发现。仿真结果呈现了所提出的QR分解晶格结构方案的性能关于设备功率,在发现的设备数量和受控信令开销中增强。

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