Non-Orthogonal Multiple Access for Vehicular Communication

S. Pfletschinger, M. Navarro
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引用次数: 3

Abstract

In this paper, we establish a simple model for the exchange of messages in a vehicular network and we consider fundamental limits on the achievable data rate. For a vehicular network, the exchange of data with other nearby vehicles is particularly important for traffic safety, e.g. for collision avoidance, but also for cooperative applications like platooning. These use cases are currently addressed by standards building on IEEE 802.11p, namely ITS-G5 and DSRC (dedicated short range communication), which encounter saturation problems at high vehicle densities. For this reason, we take a step back and ask for the fundamental limits for the common data rate in a vehicular network. After defining a simple single-lane model and the corresponding capacity limits for some basic multiple-access schemes, we present results for a more realistic setting. For both scenarios, non-orthogonal multiple-access (NOMA) yields the best results.
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车载通信的非正交多址
在本文中,我们建立了一个简单的车用网络信息交换模型,并考虑了可实现的数据速率的基本限制。对于车辆网络来说,与附近其他车辆交换数据对于交通安全尤其重要,例如避免碰撞,但对于队列等合作应用也很重要。这些用例目前由基于IEEE 802.11p的标准解决,即ITS-G5和DSRC(专用短距离通信),它们在高车辆密度下会遇到饱和问题。出于这个原因,我们退一步,并要求在车载网络中通用数据速率的基本限制。在定义了一些基本多址方案的简单单车道模型和相应的容量限制后,我们给出了一个更现实的设置结果。对于这两种情况,非正交多址(NOMA)产生最好的结果。
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