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A novel solution for a Wireless Body Sensor Network: Telehealth elderly people monitoring

机译:用于无线体传感器网络的新型解决方案:远程性老年人监测

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Event-based data transfer through Wireless Body Sensor Networks (WBSN) for monitoring the health of the elderly has so far not been successfully implemented due to limitations arising forms unreliable data, end-to-end delay during data transmission and the high energy consumption by sensors. This paper aims to improve reliability and latency and to reduce energy consumption by sensors during data transmission in WSBN. The proposed system consists of an Enhanced Reliability, Energy-Efficient and Latency (EREEAL) algorithm to reduce data losses and end-to-end delay as well as improve the transmission reliability in WBSN by sending the sensor data during different time slots using Time Division Multiple Access (TDMA) analysis and by minimizing redundant sensitive data. The result shows that the new algorithm improves reliability to 98% over the data bits generated within 8?~?12?min and reduces latency to 0.635 compared to 0.875?ms in the ‘state of the art’ system. Furthermore, the reduction in latency leads to lower power consumption by sensors, reduced to 315.638*10 3JS/bits during patient data transmission using a tele-monitoring process. The proposed system concentrates on reducing interference with data between sensors and focuses on minimizing data loss during transmission. Thus, this study provides an acceptable range of reliability with reduced delay and lower power consumption due to which doctors at a remote site can obtain reliable data value for smooth monitoring.
机译:基于事件的数据传输通过无线身体传感器网络(WBSN)用于监测老年人的健康状况,到目前为止由于产生的限制而没有成功实施,以在数据传输期间形成不可靠的数据,端到端延迟和高能量消耗传感器。本文旨在提高可靠性和延迟,并在WSBN中的数据传输期间减少传感器的能量消耗。该系统由增强的可靠性,节能和延迟(Ereal)算法组成,以减少数据丢失和端到端延迟,并通过使用时间划分在不同时隙期间发送传感器数据来提高WBSN中的传输可靠性多次访问(TDMA)分析,并最大限度地减少冗余敏感数据。结果表明,新算法将可靠性提高到8?〜12〜12中生成的数据位上的可靠性至98%,并将延迟减少到0.635,而“艺术状态”系统中的0.875毫秒。此外,使用远程监控过程,延迟的降低导致传感器的功耗降低到患者数据传输期间减少到315.638 * 10 3JS /比特。所提出的系统集中在减少传感器之间的数据的干扰,并专注于最小化传输过程中的数据丢失。因此,本研究提供了可接受的可靠性范围,降低延迟和较低的功耗,因为远程站点的医生可以获得可靠的数据值以进行平滑监控。

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