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引用次数: 0

摘要

在本文中,我们描述了一种VM2M覆盖架构,其中覆盖作为VANET的控制通道(CCH),在车辆和RSU之间传输安全消息。VM2M覆盖网络通过物理层的专用前导码和按照IEEE 802.15.4 CSMA/CA机制建模的介质访问控制(MAC)层实现。在本文中,我们实现了基于优先级的VM2M,在物理层中给予VM2M更高的优先级。为此,VM2M序文的传输功率要高于H2H。由于城市、城郊和农村地区以及高速公路上的小区尺寸较大和/或车辆速度较快,VM2M覆盖采用总持续时间为2毫秒的前置格式2实现。我们将H2H和VM2M流量以相同功率同时接入基站的非优先级场景与基于VM2M优先级的场景进行了比较,其中M2M覆盖的每个序文的传输功率都高于任何非覆盖的序文。研究发现,与非优先级场景相比,基于VM2M优先级的场景可以增加VM2M子网的容量,而不会过度减少留给H2H/SCH流量的容量。
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Priority based VM2M communications over LTE
In this paper, we describe an VM2M overlay architecture where the overlay acts as the control channel (CCH) of VANET to transfer safety messages between vehicles and RSU. The VM2M overlay network is implemented over dedicated preamble codes in the physical layer and the medium access control (MAC) layer modeled as the IEEE 802.15.4 carrier sense multiple access (CSMA/CA) mechanism. In this paper, we implement priority based VM2M where higher priority is given to VM2M in the physical layer. To this end, VM2M preambles are transmitted with higher power than H2H. Due to large cell sizes and/or higher vehicle velocities in urban, sub-urban, and rural areas, and on highways, VM2M overlay is implemented using preamble format 2 with total duration of 2 ms. We compare the non-priority scenario, in which H2H and VM2M traffic access the base station simultaneously with the same power, to VM2M priority-based scenario where each preamble of M2M overlay is transmitted with higher power than any of non-overlay ones. The VM2M priority-based scenario is found to increase the capacity of VM2M subnetworks compared with non-priority scenario, without undue deterioration of the capacity left for H2H/SCH traffic.
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