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QoS aware molecular activation and communication scheme in molecular nanoscale sensor networks

机译:分子纳米级传感器网络中的QoS意识到分子激活和通信方案

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Molecular Nanoscale Sensor Networks (MNSNs) introduce a new molecular routing paradigm where the molecular communication is enabled by activating the nanosensors on the routing path to release the molecules. This new molecular activation mechanism is a new many-to-many scheme where the transmitting nanosensors transmits molecules to multiple receiving nanosensors and the receiving nanosensors receives the molecules from multiple transmitting nanosensors. Molecular activation mechanism poses two new capacity constraints where the received molecules must be above a threshold to activate the receiving node and the molecules released from the transmitter should not exceed its molecular capacity. These two new criteria (many-to-many communication and capacity constraint) make the molecular activation and communication scheme a very challenging issue in an MNSN, which is totally different from the communication and routing scheme in existing wireless IP networks. In this paper, for the first time, we propose a sound mathematical model to capture the many-to-many communication scheme, activation capacity constraint and molecular capacity constraint in the MNSN. We then propose a novel QoS (cost and capacity) aware algorithm, CACAMA, to identify the cost efficient molecular activation and communication path in the MNSN. From the computational experiments, it shows that the CACAMA algorithm is superior to other two heuristics, SP and MCST, in all network settings.
机译:分子纳米级传感器网络(MNSNS)引入了一种新的分子路由范例,其中通过在路由路径上激活纳米传感器来实现分子通信以释放分子。这种新的分子活化机制是一种新的多对多方案,其中透射纳米调传料将分子透射到多个接收纳米调传料,并且接收纳米调传料从多个透射纳米调传料接收分子。分子激活机制造成两个新的容量约束,其中所接收的分子必须高于阈值以激活接收节点,并且从发射器释放的分子不应超过其分子容量。这两个新标准(多对多通信和容量约束)使得分子激活和通信方案在MNSN中具有非常具有挑战性的问题,其与现有无线IP网络中的通信和路由方案完全不同。本文首次提出了一种声音数学模型,以捕获MNSN中的多对多通信方案,激活容量约束和分子容量约束。然后,我们提出了一种新的QoS(成本和容量)意识算法,Cacama,以确定MNSN中的成本有效的分子激活和通信路径。从计算实验中,它表明,Cacama算法在所有网络设置中优于其他两个启发式,SP和MCST。

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