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An Efficient Data Compression Algorithm For Real-Time Monitoring Applications In Healthcare

机译:一种用于医疗保健实时监控的高效数据压缩算法

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Wireless sensor technology has revolutionised healthcare practices to deal with the increasing number of chronically ill patients. Real-time and continuous monitoring of health parameters can help in early diagnosis and timely treatment. Sensor nodes having limited resources in health monitoring systems are equipped with number of sensors which generates huge amount of data. An increase in data results in an increase in power consumption and memory requirement. An efficient data compression algorithm can be applied to reduce the power consumption and memory requirement. Minimalist, Adaptive and Streaming (MAS) algorithm proposed in literature can reduce significant power consumption during data transmission. In current work, MAS algorithm is further optimised to propose O-MAS-R algorithm by introducing R-bit to take advantage of consecutive repetition of data samples. MAS and O-MAS-R algorithms are applied on Electrocardiography (ECG), Electromyography (EMG) and accelerometer (Acc) datasets to compare the performance in terms of compression ratio (CR). O-MAS-R has shown 7.21 % average increase in CR of ECG datasets, 8.25% increase in EMG datasets and 45.24% increase in Acc datasets as compare to MAS algorithm.
机译:无线传感器技术彻底改变了医疗保健实践,以应对越来越多的慢性病患者。实时连续监测健康参数可以帮助早期诊断和及时治疗。在健康监视系统中资源有限的传感器节点配备了许多传感器,这些传感器会生成大量数据。数据的增加导致功耗和内存需求的增加。可以应用有效的数据压缩算法来减少功耗和内存需求。文献中提出的极简,自适应和流式传输(MAS)算法可以减少数据传输期间的大量功耗。在当前的工作中,通过引入R位以利用数据样本的连续重复,进一步优化了MAS算法以提出O-MAS-R算法。 MAS和O-MAS-R算法应用于心电图(ECG),肌电图(EMG)和加速度计(Acc)数据集,以按压缩比(CR)比较性能。与MAS算法相比,O-MAS-R显示ECG数据集的CR平均增加7.21%,EMG数据集的8.25%增加,Acc数据集的45.24%。

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