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Yet efficient routing protocols for half- and full-duplex cognitive radio Ad-Hoc Networks over IoT environment

机译:对于IOT环境的半双工认知无线电Ad-hoc网络的高效路由协议

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For the sake of fulfilling the ever-increasing demands on the Internet of Things (IoT) applications, researchers are implementing Cognitive Radio (CR) technology in Ad-Hoc Networks (AHNs). Moreover, In-Band Full-Duplex (IBFD) technology in CRAHNs is gaining scholars' interests recently. Hence, we are considering non-time-slotted IBFD-CRAHNs to clear up the reactivation failure and frequent hand-off problems confronting Primary Users (PUs) and Secondary Users (SUs), respectively, in Half-Duplex (HD) CRAHNs. We propose two HD-CRAHN routing protocols without a common control channel intended for practicality. This is accomplished by adopting multi- and unicast transmissions in the Route Request Packets (RRQPs) delivery. The first protocol is tested with data transmission in HD mode. However, the second routing protocol adopts a channel assignment technique proposed in the literature for FD communications; thus, we apply FD data transmission on it. Additionally, this paper offers an IBFD-based CRAHN routing protocol that broadcasts the RRQP over the channels that have SUs sensing them or even transmitting over them. This is possible because of two patents that allow wireless nodes to receive (transmit) in a sweeping manner while transmitting to (receiving from) another node. The three protocols' performance is studied and compared with the most pertinent and recent protocol named Probabilistic and Deterministic Path Selection (PDPS) using an exclusive simulator, built-in Java language, over the simulator used in PDPS experiments. As far as the throughput performance metric is concerned, our simulation results show noticeable and undeniable improvements over the PDPS protocol.
机译:为了满足事物互联网(IOT)应用的不断增加的需求,研究人员正在在Ad-hoc网络(AHN)中实施认知无线电(CR)技术。此外,在Crahns中的带内全双工(IBFD)技术最近获得学者的兴趣。因此,我们正在考虑非时尚的IBFD-Crahns来清除重新激活失败和频繁的交出问题,分别在半双工(HD)Crahns中分别构成主要用户(PUS)和二级用户(SUS)。我们提出了两个HD-Crahn路由协议,没有用于实用性的共同控制信道。这是通过在路由请求分组(RRQPS)传送中采用多播传输来实现的。第一个协议用HD模式的数据传输进行测试。然而,第二路由协议采用文献中提出的用于FD通信的信道分配技术;因此,我们在其上应用FD数据传输。此外,本文提供了基于IBFD的CRAHN路由协议,该协议将RRQP广播,这些频道频道甚至会传输它们。这是可能的,因为两个专利允许无线节点以扫描方式接收(发送),同时发送到另一节点(接收)。研究了三种协议的性能,并将其与使用独家模拟器,内置Java语言,在PDPS实验中使用的模拟器中的最相关和最近的协议进行比较。就吞吐量性能指标而言,我们的仿真结果显示PDPS协议的显着和不可否认的改进。

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