Department of Computer Science and Engineering, Kyung Hee University, Yongin-si, Gyeonggi-do 17104, Korea.
Department of Electronics and Telecommunication Engineering, Faculty of Electrical and Electronics Engineering Ton Duc Thang University, Ho Chi Minh City 756636, Vietnam.
Sensors (Basel). 2018 Sep 10;18(9):3028. doi: 10.3390/s18093028.
In vehicular ad hoc networks (VANETs), many schemes for a multi-channel media access control (MAC) protocol have been proposed to adapt to dynamically changing vehicle traffic conditions and deliver both safety and non-safety packets. One such scheme is to employ both time-division multiple access (TDMA) and carrier-sense multiple access (CSMA) schemes (called a hybrid TDMA/CSMA scheme) in the control channel (CCH) interval. The scheme can adjust the length of the TDMA period depending on traffic conditions. In this paper, we propose a modified packet transmitted in the TDMA period to reduce transmission overhead under a hybrid TDMA/CSMA multi-channel MAC protocol. Simulation results show that a MAC protocol with a modified packet supports an efficient packet delivery ratio of control packets in the CCH. In addition, we analyze the hybrid TDMA/CSMA multi-channel MAC protocol with the modified packet under saturated throughput conditions on the service channels (SCHs). The analysis results show that the number of neighbors has little effect on the establishment of the number of time slots in TDMA periods and on SCHs under saturated throughput conditions.
在车载自组网(VANETs)中,已经提出了许多多信道媒体访问控制(MAC)协议的方案,以适应动态变化的车辆交通条件,并同时传输安全和非安全数据包。其中一种方案是在控制信道(CCH)间隔中同时使用时分多址(TDMA)和载波侦听多址(CSMA)方案(称为混合 TDMA/CSMA 方案)。该方案可以根据交通条件调整 TDMA 周期的长度。在本文中,我们提出了一种在 TDMA 周期中传输的修改后的数据包,以减少混合 TDMA/CSMA 多信道 MAC 协议下的传输开销。仿真结果表明,具有修改后数据包的 MAC 协议支持 CCH 中控制数据包的高效分组传输率。此外,我们还在服务信道(SCHs)上的饱和吞吐量条件下分析了具有修改后数据包的混合 TDMA/CSMA 多信道 MAC 协议。分析结果表明,邻居数量对 TDMA 周期中的时隙数量的建立和饱和吞吐量条件下的 SCHs 几乎没有影响。