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Public safety users’ priority-based energy and time-efficient device discovery scheme with contention resolution for ProSe in third generation partnership project long-term evolution-advanced systems

机译:公共安全用户基于优先级的能源和省时设备发现方案,在第三代合作伙伴项目长期演进高级系统中具有针对ProSe的争用解决方案

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摘要

A device-to-device (D2D) discovery scheme is key enabler for proximity-based services in third generation partnership project long-term evolution-advanced systems for public safety (PS) and general LTE scenarios. The deployment of D2D networks results in severe co-channel interference between conventional cellular users and D2D users, and faces proximity interference management challenges because of the co-existence of multiple D2D users. We propose a time and energy-efficient contention-resolving device discovery resource allocation (TEECR-DDRA) scheme that has the capability to enhance the success ratio for discovery of D2D users by reducing collisions among users. Moreover, the proposed TEECR-DDRA scheme has the ability to prioritise PS users to meet their QoS and latency requirements. Furthermore, multi-channel slotted ALOHA with energy sensing can be used to increase the probability of successful discovery of non-PS users. This ability helps to reduce the discovery time of PS users under disaster scenarios, and also reduces the energy consumption of non-PS users by minimising the number of beacon retransmissions. System-level simulations show that the proposed TEECR-DDRA scheme performs remarkably well under D2D network. Compared with the conventional random access scheme, the proposed scheme almost doubles the discovery range and significantly improves the success ratio for discovery of D2D users.
机译:在公共安全(PS)和一般LTE场景的第三代合作伙伴计划长期演进高级系统中,设备到设备(D2D)发现方案是基于接近性服务的关键促成因素。 D2D网络的部署会导致常规蜂窝用户和D2D用户之间出现严重的同频道干扰,并且由于多个D2D用户并存,因此面临邻近干扰管理的挑战。我们提出了一种节省时间和能源的竞争解决设备发现资源分配(TEECR-DDRA)方案,该方案具有通过减少用户之间的冲突来提高D2D用户发现成功率的能力。此外,所提出的TEECR-DDRA方案具有优先级PS用户满足其QoS和等待时间要求的能力。此外,具有能量感应功能的多通道时隙ALOHA可用于增加成功发现非PS用户的可能性。此功能有助于减少灾难情况下PS用户的发现时间,并通过最小化信标重传次数来减少非PS用户的能耗。系统级仿真表明,所提出的TEECR-DDRA方案在D2D网络下的性能非常好。与传统的随机访问方案相比,该方案几乎将发现范围扩大了一倍,并大大提高了D2D用户发现的成功率。

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