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A Novel and Miniaturized 433/868MHz Multi-band Wireless Sensor Platform for Body Sensor Network Applications

机译:一种用于体传感器网络应用的新型和小型化433 / 868MHz多频带无线传感器平台

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Body Sensor Network (BSN) technology is seeing a rapid emergence in application areas such as health, fitness and sports monitoring. Current BSN wireless sensors typically operate on a single frequency band (e.g. utilizing the IEEE 802.15.4 standard that operates at 2.45GHz) employing a single radio transceiver for wireless communications. This allows a simple wireless architecture to be realized with low cost and power consumption. However, network congestion/failure can create potential issues in terms of reliability of data transfer, quality-of-service (QOS) and data throughput for the sensor. These issues can be especially critical in healthcare monitoring applications where data availability and integrity is crucial. The addition of more than one radio has the potential to address some of the above issues. For example, multi-radio implementations can allow access to more than one network, providing increased coverage and data processing as well as improved interoperability between networks. A small number of multi-radio wireless sensor solutions exist at present but require the use of more than one radio transceiver devices to achieve multi-band operation. This paper presents the design of a novel prototype multi-radio hardware platform that uses a single radio transceiver. The proposed design allows multi-band operation in the 433/868MHz ISM bands and this, together with its low complexity and small form factor, make it suitable for a wide range of BSN applications.
机译:身体传感器网络(BSN)技术在诸如健康,健身和体育监测等应用领域的快速出现。电流BSN无线传感器通常在单个频带上操作(例如,利用以2.45GHz运行的IEEE 802.15.4标准)采用单个无线电收发器进行无线通信。这允许以低成本和功耗实现简单的无线架构。但是,网络拥塞/失败可以在数据传输,服务质量(QoS)和传感器的数据吞吐量方面创造潜在问题。这些问题在医疗保健监测应用中可能尤其重要,其中数据可用性和完整性至关重要。添加多个无线电有可能解决上述一些问题。例如,多无线电实现可以允许访问多个网络,从而提供增加的覆盖和数据处理,以及网络之间的互操作性。目前存在少量多电台无线传感器解决方案,但需要使用多个无线电收发器设备来实现多频带操作。本文介绍了一种使用单个无线电收发器的新型原型多无线电硬件平台的设计。所提出的设计允许在433 / 868MHz ISM带中的多频带操作以及其低复杂性和小型形状因素,使其适用于各种BSN应用。

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