用于监测短期事件的无线传感器同步方法

Andrey Zuev, Dmytro Karaman, A. Olshevskiy
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引用次数: 0

摘要

时事性。实验研究的关键部分是获得关于被研究对象或事件的最准确的数据。通常,有必要记录在空间和时间上精确定位具有挑战性的过程参数。所考虑的过程或事件可以在几分之一秒内非常迅速地发生,这使得研究人员很难部署和配置记录设备。这就需要建立一个由众多记录设备组成的网络,以免错过与所研究过程相关的关键事件,并获得足够的实验数据。另一个问题是从不同的测量设备获得的数据的同步。空间分布的记录设备必须以高度自治的方式运行,从而导致计时上的差异和同步的需要。在持续时间低于毫秒的过程中,每个节点的计时缺陷会产生重大影响:未检测到和未解释的差异可能导致对所研究过程或事件的总体情况的扭曲或误解,即使在获得所有必要的数据之后也是如此。这就是为什么开发和改进分布式无线传感器网络中同步数据记录节点的方法是一项重要而紧迫的任务。任务陈述。所提出的解决方案的一个实际应用是研究由具有高动能的异物穿透人体造成的伤害。这些研究使用由复合材料和弹道明胶制成的人造人体模拟器进行,并植入电子设备来记录物理参数的变化。结果和结论。本文提出了一种将无线节点本地时钟同步过程集成到位于模拟器上的统一信息测量系统的硬件和软件方法以及技术实现过程。所提出的方法允许使用低成本的商用现成组件实现不超过12 μs/秒的同步精度。研究的实践部分讨论了ESP系列的微处理器,一般来说,当使用所提出的方法时,这些微处理器提供了足够的时间同步精度,从而允许在系统内经济有效地开发节点。该方法还可以应用于其他领域,如电机和发动机的振动测量以及结构健康监测。
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WIRELESS SENSOR SYNCHRONIZATION METHOD FOR MONITORING SHORT-TERM EVENTS
Topicality. The key part of experimental research is obtaining the most accurate data about the studied object or event. Often, it is necessary to record parameters of processes that are c hallenging to precisely localize in space and time. The process or event under consideration can occur very rapidly, within fractions of a second, making it difficult for the researcher to deploy and configure recording equipment. This necessitates the creation of a network consisting of numerous recording devices to not miss critical events related to the studied process and obtain a sufficient volume of experimental data. Another issue is the synchronization of data obtained from different measurement devices. Spatially distributed recording devices must operate with a high degree of autonomy, leading to discrepancies in timekeeping and the need for synchronization. In processes with sub-millisecond durations, imperfections in timekeeping at each node have a significant impact: undetected and unaccounted discrepancies can lead to distortion or a misunderstanding of the overall picture of the studied process or event, even after acquiring all the necessary data. This is why the development and improvement of methods for synchronizing data recording nodes in distributed wireless sensor networks is important and urgent task. Task statement. One practical application of the proposed solution is the study of injuries caused by the penetration of foreign objects with high kinetic energy into the human body. These studies are conducted using artificial simulators of the human body made from composite materials and ballistic gelatin, with implanted electronic devices for recording changes in physical parameters. Results and conclusions. The article presents a hardware and software method, along with the technical implementation of the process for synchronizing the local clocks of wireless nodes, integrated into a unified information-measurement system located on the simulator. The proposed method allows achieving synchronization accuracy of no more than 12 μs/second using low-cost commercial off-the-shelf components. The practical part of the research discusses microprocessors from the ESP family, which, in general, provide sufficient time synchronization accuracy when using the proposed method, allowing for cost-effective node development within the system. The proposed method can also be applied in other fields, such as measuring vibrations in electrical machines and engines, as well as structural health monitoring.
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