Machine-to-Machine (M2M) communication is an important type of communication in the Internet-of-Things (IoT). How to send data in these high-density communications using relay selection can help improve the performance of this type of communication in various applications. In addition, the possibility of simultaneous use of different Radio Frequency (RF) interfaces helps to use the spectrum more efficiently. In this work, we try to further use machine communication equipment and improve the average data rate of networks in different applications such as the IoT, which have different bandwidth requirements, by providing an optimization algorithm for relay selection as well as the simultaneous and dynamic multiple M2M RF interface setting that called Dynamic Optimal Relay Selection and RF interfaces Setting Algorithm (DORSA). The simulation results show that the average data rate of DORSA with three interfaces (DORSA\_W-B-Z) can be improved up to 10% compared to the existing methods such as optimal direct transmission and relay selection algorithms with static RF interface setting.
翻译:M2M(M2M)通信是互联网通信中的一个重要通信类型。 如何利用中继选择发送这些高密度通信的数据,可以帮助改进这种通信在各种应用中的性能。此外,同时使用不同无线电频率界面的可能性有助于更有效地使用频谱。在这项工作中,我们试图进一步使用机器通信设备,提高不同应用网络的平均数据率,如具有不同带宽要求的IoT(IoT)网络,为中继选择提供优化算法以及同时和动态的多M2MRF接口设置,称为动态最佳中继选择和RF界面设置阿尔哥里特姆(DORSA),模拟结果表明,与现有方法相比,具有三个界面(DORSA ⁇ W-B-Z)的DORSA平均数据率可以提高至10%,例如最佳直接传输和中继选择的静态RF接口设置等现有方法。