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Fast realization of the LADT ECG data compression method

机译:LADT ECG数据压缩方法的快速实现

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摘要

The system clock in the authors' Intel 80c31-based Holter recorder is 12 MHz, and thus it takes tens of milliseconds to obtain the d/sub k/ at instant k. Therefore, it is impossible to apply the original linear approximation distance thresholding (LADT) algorithm in real time. With the authors' improved algorithm it takes about one ms to calculate /spl verbar/a/sub adm//spl verbar/=/spl sigma//spl middot/(1+(a/t)/sup 2/)/sup 1/2/. Though it is much faster to fulfill a linear segment approximation by the improved algorithm than by the original one, it is still difficult directly to apply the improved algorithm in a real-time system. However, it takes only two microseconds to get /spl verbar/a/sub adm//spl verbar/ by look-up in the error threshold table. In this way, about one millisecond is needed to complete a linear segment approximating (about 50 points). It can be seen that the fast realization scheme using the error threshold table not only preserves the high compression ratio and low distortion advantages of the LADT algorithm, but also makes possible the application of the LADT algorithm in real-time.
机译:作者的基于Intel 80c31的Holter记录器中的系统时钟为12 MHz,因此在瞬间k处获得d / sub k /需要数十毫秒。因此,不可能实时应用原始的线性近似距离阈值(LADT)算法。使用作者改进的算法,计算/ spl verbar / a / sub adm // spl verbar / = / spl sigma // spl middot /(1+(a / t)/ sup 2 /)/ sup大约需要1毫秒1/2 /。尽管通过改进的算法实现线性分段逼近比通过原始算法快得多,但是仍然难以直接将改进的算法应用于实时系统中。但是,通过在错误阈值表中查找,只需两微秒即可获得/ spl verbar / a / sub adm // spl verbar /。这样,大约需要一个毫秒来完成近似的线性段(大约50个点)。可以看出,利用错误阈值表的快速实现方案,不仅保留了LADT算法的高压缩比和低失真的优点,而且使LADT算法的实时应用成为可能。

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