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Toward Multi-Radio Vehicular Data Piping for Dynamic DSRC/TVWS Spectrum Sharing

机译:面向动态DSRC / TVWS频谱共享的多无线电车辆数据管道

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Enabling high-throughput and cost-effective vehicular communications is important for many emerging vehicular applications, such as safety applications, traffic management, and mobile Internet access. However, dedicated short-range communications (DSRC), as the sole solution so far, would meet significant challenges in the foreseeable future for supporting diverse vehicular applications simply due to the spectrum scarcity. To address this issue, in this paper, we propose an adaptive vehicular data piping framework, which is assisted by a geolocation database, for the joint utilization of DSRC and TV white space (TVWS) spectrum; in this framework, three types of vehicular data pipes (DSRC, TVWS, and cellular) are considered, while the cellular data pipe is only used as a control-plane link in coordinating the dynamic DSRC and TVWS spectrum sharing happened in the data-plane operations. In order to guarantee the optimal dynamic vehicular access to the geolocation database, we first propose a log-sum-exp (LSE) approximation-based TVWS geolocation database access approach, named LSE-WS algorithm. We formulate the adaptive vehicular data piping problem for dynamic DSRC/TVWS spectrum sharing as a coalitional formation game, and it is shown that the proposed coalitional formation approach reaches the optimal and Nash-stable vehicular data pipe selection partition in a distributed way. Through extensive simulations, we demonstrate that not only the proposed LSE-WS algorithm satisfies the dynamic vehicular geolocation database access requirement but also the adaptive multi-radio vehicular data piping approach for dynamic DSRC/TVWS spectrum sharing significantly outperforms the traditional DSRC solution.
机译:对于许多新兴的车辆应用(例如安全应用,流量管理和移动Internet访问),启用高吞吐量和具有成本效益的车辆通信非常重要。但是,到目前为止,专用短程通信(DSRC)作为唯一的解决方案,在可预见的将来,仅由于频谱稀缺,就将在支持各种车辆应用方面遇到重大挑战。为了解决这个问题,在本文中,我们提出了一个自适应的车辆数据管道框架,该框架在地理位置数据库的辅助下用于DSRC和电视空白空间(TVWS)频谱的联合利用。在此框架中,考虑了三种类型的车载数据管道(DSRC,TVWS和蜂窝),而蜂窝数据管道仅用作控制平面链路来协调数据平面中发生的动态DSRC和TVWS频谱共享操作。为了保证对地理位置数据库的最佳动态车辆访问,我们首先提出了一种基于对数和表达式(LSE)近似的TVWS地理位置数据库访问方法,称为LSE-WS算法。我们将动态DSRC / TVWS频谱共享的自适应车辆数据管道问题公式化为联盟形成博弈,结果表明,所提出的联盟形成方法以分布式的方式达到最优且Nash稳定的车辆数据管道选择分区。通过广泛的仿真,我们证明了提出的LSE-WS算法不仅满足动态车辆地理位置数据库的访问要求,而且用于动态DSRC / TVWS频谱共享的自适应多无线电车辆数据管道方法明显优于传统的DSRC解决方案。

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