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mDARAL: A Multi-Radio Version for the DARAL Routing Algorithm

机译:mDARAL:DARAL路由算法的多无线电版本

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摘要

Smart Cities are called to change the daily life of human beings. This concept permits improving the efficiency of our cities in several areas such as the use of water, energy consumption, waste treatment, and mobility both for people as well as vehicles throughout the city. This represents an interconnected scenario in which thousands of embedded devices need to work in a collaborative way both for sensing and modifying the environment properly. Under this scenario, the majority of devices will use wireless protocols for communicating among them, representing a challenge for optimizing the use of the electromagnetic spectrum. When the density of deployed nodes increases, the competition for using the physical medium becomes harder and, in consequence, traffic collisions will be higher, affecting data-rates in the communication process. This work presents mDARAL, a multi-radio routing algorithm based on the Dynamic and Adaptive Radio Algorithm (DARAL), which has the capability of isolating groups of nodes into sub-networks. The nodes of each sub-network will communicate among them using a dedicated radio frequency, thus isolating the use of the radio channel to a reduced number of nodes. Each sub-network will have a master node with two physical radios, one for communicating with its neighbours and the other for being the contact point among its group and other sub-networks. The communication among sub-networks is done through master nodes in a dedicated radio frequency. The algorithm works to maximize the overall performance of the network through the distribution of the traffic messages into unoccupied frequencies. The obtained results show that mDARAL achieves great improvement in terms of the number of control messages necessary to connect a node to the network, convergence time and energy consumption during the connection phase compared to DARAL.
机译:智慧城市被称为改变人类的日常生活。这一概念可以提高我们城市在多个领域的效率,例如用水,能源消耗,废物处理以及整个城市的人员和车辆的出行。这代表了一个互连的场景,其中成千上万个嵌入式设备需要以协作的方式工作,以正确地感测和修改环境。在这种情况下,大多数设备将使用无线协议在它们之间进行通信,这对优化电磁频谱的使用构成了挑战。当部署的节点的密度增加时,使用物理介质的竞争将变得更加激烈,因此,流量冲突将变得更高,从而影响通信过程中的数据速率。这项工作提出了mDARAL,这是一种基于动态和自适应无线电算法(DARAL)的多无线电路由算法,它具有将节点组隔离到子网中的功能。每个子网的节点将使用专用射频在它们之间进行通信,从而将无线信道的使用隔离到数量减少的节点上。每个子网都有一个带有两个物理无线电的主节点,一个用于与其邻居进行通信,另一个作为其组与其他子网之间的联系点。子网之间的通信是通过专用射频中的主节点完成的。该算法通过将流量消息分配到未占用的频率来最大化网络的整体性能。获得的结果表明,与DARAL相比,mDARAL在将节点连接到网络所需的控制消息数,收敛时间和连接阶段的能耗方面都取得了很大的进步。

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