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Loss Waveform Interval for the Data Buffering of a Multiple-Channel Microcomputer-Based Oscilloscope System

机译:多通道基于微机的示波器系统的数据缓冲的损失波形间隔

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摘要

Microcomputer-based oscilloscope instruments have been developed recently because they can easily process, store, and transmit various measured signals with the help of computers. Although this type of oscilloscope is workable and available, at the present time, we still do not know too much about the quantitative relationships with respect to the system bandwidth, the buffer size, the channel numbers, and the loss waveform interval in the data buffering mechanism of an asynchronous microcomputer-based oscilloscope. In this paper, we propose a modified queueing model for the quantitative analysis of these relationships. The primary results from this model and the measurement of the experimental system show the higher the required bandwidth, the higher the loss of the waveform interval for the measured signals. Fortunately, our oscilloscope is used to measure repetitive “periodic” waveforms, so the loss waveform intervals due to state transition will not cause any serious problem from a steady-state point of view.
机译:基于微计算机的示波器仪器最近得到了发展,因为它们可以借助计算机轻松地处理,存储和传输各种测量信号。尽管这种示波器是可行的且可用的,但目前,我们仍然不太了解关于系统带宽,缓冲区大小,通道号和数据缓冲中的丢失波形间隔的定量关系。异步微机示波器的原理在本文中,我们提出了一种改进的排队模型,用于对这些关系进行定量分析。该模型和实验系统的测量结果表明,所需带宽越高,被测信号的波形间隔损失就越大。幸运的是,我们的示波器用于测量重复的“周期性”波形,因此从稳态的角度来看,由于状态转换而造成的损耗波形间隔不会造成任何严重的问题。

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