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An Effective Delay Reduction Approach through a Portion of Nodes with a Larger Duty Cycle for Industrial WSNs

机译:针对工业无线传感器网络通过占空比更大的部分节点的有效减少延迟的方法

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摘要

For Industrial Wireless Sensor Networks (IWSNs), sending data with timely style to the stink (or control center, CC) that is monitored by sensor nodes is a challenging issue. However, in order to save energy, wireless sensor networks based on a duty cycle are widely used in the industrial field, which can bring great delay to data transmission. We observe that if the duty cycle of a small number of nodes in the network is set to 1, the sleep delay caused by the duty cycle can be effectively reduced. Thus, in this paper, a novel Portion of Nodes with Larger Duty Cycle (PNLDC) scheme is proposed to reduce delay and optimize energy efficiency for IWSNs. In the PNLDC scheme, a portion of nodes are selected to set their duty cycle to 1, and the proportion of nodes with the duty cycle of 1 is determined according to the energy abundance of the area in which the node is located. The more the residual energy in the region, the greater the proportion of the selected nodes. Because there are a certain proportion of nodes with the duty cycle of 1 in the network, the PNLDC scheme can effectively reduce delay in IWSNs. The performance analysis and experimental results show that the proposed scheme significantly reduces the delay for forwarding data by 8.9~26.4% and delay for detection by 2.1~24.6% without reducing the network lifetime when compared with the fixed duty cycle method. Meanwhile, compared with the dynamic duty cycle strategy, the proposed scheme has certain advantages in terms of energy utilization and delay reduction.
机译:对于工业无线传感器网络(IWSN),及时地将数据发送到由传感器节点监视的臭味(或控制中心,CC)是一个具有挑战性的问题。然而,为了节省能量,基于占空比的无线传感器网络被广泛应用于工业领域,这会给数据传输带来很大的延迟。我们观察到,如果将网络中少量节点的占空比设置为1,则可以有效减少占空比引起的睡眠延迟。因此,在本文中,提出了一种新颖的具有更大占空比的节点部分(PNLDC)方案,以减少IWSN的延迟并优化能效。在PNLDC方案中,选择一部分节点以将其占空比设置为1,并根据节点所处区域的能量丰度确定占空比为1的节点比例。该区域中的剩余能量越多,所选节点的比例就越大。由于网络中有一定比例的节点具有1的占空比,因此PNLDC方案可以有效减少IWSN中的延迟。性能分析和实验结果表明,与固定占空比方法相比,该方案在不降低网络寿命的情况下,将转发数据的延迟显着降低了8.9〜26.4%,检测延迟降低了2.1〜24.6%。同时,与动态占空比策略相比,该方案在能量利用和减少延迟方面具有一定优势。

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