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Location-partition-based channel allocation and power control methods for C-V2X communication networks

机译:C-V2X通信网络中基于位置分区的信道分配和功率控制方法

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摘要

This paper studies the resource allocation (RA) problem in a vehicle-to-vehicle (V2V) communication network when the in-band device-to-device technology is applied to support cellular-based vehicle-to-everything communication. Due to the rapid mobility of vehicles, it is difficult to track real-time channel state information so that effective RA is challenging. We consider a scenario where multiple V2V links on a road can be divided into groups to reuse cellular users' channels. A location-partition-based channel allocation (CA) scheme is first proposed by transforming the CA problem into a simple data-matching problem. Further, a best-effort rate-equal power control scheme is studied to maximize the minimum achievable rate among the V2V links in one group. Two other schemes are proposed to improve the communication latency in high-density environments. Simulation results show that the performance of the proposed RA approaches is better than conventional solutions.
机译:当带内设备到设备技术用于支持基于蜂窝的车辆到所有通信时,本文研究了车辆到车辆(V2V)通信网络中的资源分配(RA)问题。由于车辆的快速机动性,很难跟踪实时信道状态信息,因此有效的RA面临挑战。我们考虑一种场景,其中一条道路上的多个V2V链接可以分为几组以重用蜂窝用户的频道。首先通过将CA问题转换为简单的数据匹配问题来提出基于位置分区的信道分配(CA)方案。此外,研究了一种尽力而为速率相等的功率控制方案,以使一组中的V2V链路之间的最小可达到速率最大化。提出了另外两种方案来改善高密度环境中的通信延迟。仿真结果表明,所提出的随机存取方法的性能优于常规方法。

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