The critical nature of vehicular communications requires their extensive testing and evaluation. Analytical models can represent an attractive and cost-effective approach for such evaluation if they can adequately model all underlying effects that impact the performance of vehicular communications. Several analytical models have been proposed to date to model vehicular communications based on the IEEE 802.11p (or DSRC) standard. However, existing models normally model in detail the MAC (Medium Access Control), and generally simplify the propagation and interference effects. This reduces their value as an alternative to evaluate the performance of vehicular communications. This paper addresses this gap, and presents new analytical models that accurately model the performance of vehicle-to-vehicle communications based on the IEEE 802.11p standard. The models jointly account for a detailed modeling of the propagation and interference effects, as well as the impact of the hidden terminal problem. The model quantifies the PDR (Packet Delivery Ratio) as a function of the distance between transmitter and receiver. The paper also presents new analytical models to quantify the probability of the four different types of packet errors in IEEE 802.11p. In addition, the paper presents the first analytical model capable to accurately estimate the Channel Busy Ratio (CBR) metric even under high channel load levels. All the analytical models are validated by means of simulation for a wide range of parameters, including traffic densities, packet transmission frequencies, transmission power levels, data rates and packet sizes. An implementation of the models is provided openly to facilitate their use by the community.
翻译:分析模型如果能够充分模拟影响车辆通信性能的所有基本影响,则可以代表一种具有吸引力和成本效益的这种评价方法,如果这些模型能够充分模拟影响车辆通信性能的所有基本影响,迄今已提出若干分析模型,以IEEE 802.11p(或DSRC)标准为基础,模拟车辆通信;然而,现有模型通常以详细模式详细模拟MAC(MAC(Medium Access Control)),并普遍简化传播和干扰效应;这降低了这些模型作为评价车辆通信性能的替代方法的价值;本文弥补了这一差距,并提出了根据IEEEE 802.11p标准准确地模拟车辆至车辆通信性能的新分析模型;这些模型共同核算了传播和干扰效应的详细模型,以及隐藏终端问题的影响;该模型通常将MAC(Packet Formation Riber)作为发射机和接收机之间距离的函数; 本文还提出了新的分析模型,以公开量化IEEE 802.11p(甚至以IEE 802.11p标准标准标准标准标准为基础) 车辆通信通信性通信性通信性通信性通信性通信性规模,还精确地评估了其传输和数据流传输数据流的传输率。