首页> 外文会议>Annual International Conference of the Engineering in Medicine and Biology Society >Ensuring Patient Safety by using Colored Petri Net Simulation in the Design of Heterogeneous, Multi-Vendor, Integrated, Life-Critical Wireless (802.x) Patient Care Device Networks
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Ensuring Patient Safety by using Colored Petri Net Simulation in the Design of Heterogeneous, Multi-Vendor, Integrated, Life-Critical Wireless (802.x) Patient Care Device Networks

机译:通过在异构,多供应商,集成,终身无线(802.x)患者护理设备网络设计中使用彩色Petri网络仿真来确保患者安全性

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Hospitals and manufacturers are designing and deploying the IEEE 802.x wireless technologies in medical devices to promote patient mobility and flexible facility use. There is little information, however, on the reliability or ultimate safety of connecting multiple wireless life-critical medical devices from multiple vendors using commercial 802.11a, 802.11b, 802.11g or pre-802.11n devices. It is believed that 802.11-type devices can introduce unintended life-threatening risks unless delivery of critical patient alarms to central monitoring systems and/or clinical personnel is assured by proper use of 802.11e Quality of Service (QoS) methods. Petri net tools can be used to simulate all possible states and transitions between devices and/or systems in a wireless device network, and can identify failure modes in advance. Colored Petri Net (CPN) tools are ideal, in fact, as they allow tracking and controlling each message in a network based on pre-selected criteria. This paper describes a research project using CPN to simulate and validate alarm integrity in a small multi-modality wireless patient monitoring system. A 20-monitor wireless patient monitoring network is created in two versions: one with non-prioritized 802.x CSM protocols and the second with simulated Quality of Service (QoS) capabilities similar to 802.11e (i.e., the second network allows message priority management.) In the standard 802.x network, dangerous heart arrhythmia and pulse oximetry alarms could not be reliably and rapidly communicated, but the second network's QoS priority management reduced that risk significantly.
机译:医院和制造商正在医疗设备中设计和部署IEEE 802.x无线技术,以促进患者移动性和灵活的设施使用。然而,使用商业802.11a,802.11b,802.11g或802.11n设备连接来自多个供应商的多个无线寿命医疗设备的可靠性或最终安全性很少。据信802.11型器件可以引入意外的威胁性风险,除非通过适当使用802.11e的服务质量(QoS)方法来确保将关键患者报警提供给中央监测系统和/或临床人员。 Petri Net Tools可用于模拟无线设备网络中的所有可能的状态和设备和/或系统之间的转换,并且可以预先识别故障模式。实际上,彩色Petri网(CPN)工具是理想的,因为它们允许基于预先选择的标准跟踪和控制网络中的每个消息。本文介绍了一种研究项目,使用CPN模拟和验证小型多模态无线患者监控系统中的报警完整性。在两个版本中创建了20个监视器无线患者监控网络:一个具有非优先级的802.x CSM协议,第二个具有类似于802.11e的模拟服务质量(QoS)能力(即,第二网络允许消息优先级管理。)在标准的802.x网络中,无法可靠地沟通危险的心脏心律失常和脉搏血管性报警,但第二个网络的QoS优先管理显着降低了风险。

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