Proposing a novel method for clock synchronization in WSN

Seyed Kazem Kazeminezhad, S. Babaie, Amir Shiri
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Abstract

Wireless sensor networks (WSNs) of spatially distributed autonomous sensors are used to monitor physical or environmental conditions such as temperature, sound, pressure, etc. They are also used to cooperatively pass the collected data through the network to a main location. Due to the application of wireless sensor networks as a monitoring device in the real world, the physical time of the occurrence of events is important. Since WSNs have particular constraints and limitations, synchronizing the physical times for these networks is considered to be a complex task. Although many algorithms have been proposed for synchronizing time in the network, there are two main error factors in all the proposed algorithms. The first factor is the clock drift which might be caused by the influence of different environmental factors such as temperature, ambient temperature, humidity, it might be generated on crystal oscillator which is inevitable The second error factor is indeterminacy which is attributed to the existence of non-deterministic delays in sending and receiving messages between sensor nodes. These two factors together reduce the precision of synchronization algorithms. In this paper, the researchers proposed a new approach for dealing with the above-mentioned two problems and achieving better synchronization. The proposed approach is a combination of flooding time synchronization protocol (FTSP) and reference broadcast synchronization (RBS).This approach is intended to increase synchronization accuracy and network lifetime by reducing the number of synchronization messages sent between nodes and eliminating the most of non-deterministic errors in sending messages. The results of simulations conducted in the study indicated that the proposed approach is significantly more efficient than the FTSP and RBS methods in terms of parameters such as accurate synchronization, amount of sent packets and power consumption.
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提出了一种新的无线传感器网络时钟同步方法
无线传感器网络(WSNs)由空间分布的自主传感器组成,用于监测物理或环境条件,如温度、声音、压力等。它们还用于通过网络将收集到的数据协同传递到主要位置。由于无线传感器网络作为一种监控设备在现实世界中的应用,事件发生的物理时间很重要。由于无线传感器网络具有特定的约束和限制,因此同步这些网络的物理时间被认为是一项复杂的任务。尽管已经提出了许多用于网络时间同步的算法,但在所有提出的算法中都存在两个主要的误差因素。第一个因素是时钟漂移,这可能是由于温度、环境温度、湿度等不同环境因素的影响造成的,它可能在晶体振荡器上产生,这是不可避免的;第二个误差因素是不确定性,这是由于传感器节点之间发送和接收消息时存在不确定性延迟。这两个因素共同降低了同步算法的精度。在本文中,研究人员提出了一种新的方法来处理上述两个问题,并实现更好的同步。该方法将泛洪时间同步协议(FTSP)和参考广播同步(RBS)相结合。这种方法旨在通过减少节点之间发送的同步消息数量和消除发送消息中的大多数不确定性错误来提高同步准确性和网络生命周期。仿真结果表明,该方法在同步精度、发送数据包数量和功耗等参数上明显优于FTSP和RBS方法。
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