首页> 外文期刊>Dependable and Secure Computing, IEEE Transactions on >Random Transmit Power Control for DSRC and its Application to Cooperative Safety
【24h】

Random Transmit Power Control for DSRC and its Application to Cooperative Safety

机译:DSRC的随机发射功率控制及其在合作安全中的应用

获取原文
获取原文并翻译 | 示例

摘要

Cooperative safety applications require dedicated short-range communications (DSRC) to provide position-awareness of neighboring vehicles at a specific level of reliability, i.e., awareness-quality, up to a given distance, i.e., awareness-range. However, heavy communication loads negatively impact such awareness requirements due to communication impairments, ranging from strict capacity limitations of DSRC channels to correlated packet collisions due to periodic communication patterns. Transmission control strategies may adapt power or rate to control such impairments but risk missing the requirements of cooperative safety applications. In this paper, we design a new awareness control strategy by implementing a spatial awareness framework. Specifically, we adapt the distribution of the awareness-quality as a function of the awareness-range. Therefore, we first propose random transmit power control (RTPC), which manages to provide different levels of awareness-quality at different ranges, while mitigating correlated packet collisions by randomizing them in space. As RTPC is able to reduce the channel load, we secondly propose to combine RTPC with transmit rate control (TRC) and to benefit from the gained channel resources by subsequently increasing the update-rate and by implication, the quality of position-awareness. The spatial awareness control capability of RTPC TRC has been evaluated through simulations. We discuss the influence of RTPC TRC on cooperative safety applications exemplarily for the forward collision warning (FCW) application.
机译:协作式安全应用程序需要专用的短距离通信(DSRC),以在特定的可靠性级别(即感知质量)达到给定距离(即感知范围)的情况下,对相邻车辆进行位置感知。但是,由于通信障碍,繁重的通信负载会对此类感知要求产生负面影响,范围从DSRC通道的严格容量限制到由于周期性通信模式而导致的相关数据包冲突。变速箱控制策略可能会调整功率或速率来控制此类损害,但可能会错过合作安全应用程序的要求。在本文中,我们通过实现空间意识框架来设计一种新的意识控制策略。具体来说,我们根据意识范围调整意识质量的分布。因此,我们首先提出了随机发射功率控制(RTPC),该方法设法在不同范围提供不同级别的感知质量,同时通过在空间上将它们随机化来缓解相关的数据包冲突。由于RTPC可以减少信道负载,因此我们第二次建议将RTPC与传输速率控制(TRC)结合使用,并通过随后提高更新速率以及暗示位置感知的质量来从获得的信道资源中受益。通过仿真评估了RTPC TRC的空间感知控制能力。我们以向前碰撞警告(FCW)应用为例,讨论了RTPC TRC对协作安全应用的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号