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Research on Improving TII Performances of IEEE 1451 Smart Sensors

机译:改进IEEE 1451智能传感器TII性能的研究

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This paper analyzes the performance of IEEE 1451 networked smart sensors and then points out that its transmission bottleneck is its TII. According to the various practical techniques of TII, this paper analyzes the timing sequence and the data wire utilization ratio of TII protocol. It presents two practical methods in different applications, including the transmission mode of transferring 16 or 32 bits data after NACK transition and the method of increasing the cache size reasonably. The TII model is established in LabVIEW and used for simulating and testing the proposal methods. Results show that, compared with the ordinary TII model, the average data transmission rate of the transmission mode of transferring 16 or 32 bits data after NACK transition increases in 20.72% and 30.62%, while their delay-time decreases 23.64% and 35.41%. Using the method of increasing the cache size, the average data transmission rate increases, but the delay-time also increases.
机译:本文分析了IEEE 1451网络智能传感器的性能,然后指出其传输瓶颈是其TII。 根据TII的各种实用技术,本文分析了TII协议的定时序列和数据线利用率。 它呈现了不同应用中的两种实用方法,包括在NACK转换后传输16或32位数据的传输模式以及合理地增加高速缓存大小的方法。 TII模型在LabVIEW中建立,用于模拟和测试提案方法。 结果表明,与普通TII模型相比,在NACK转换后传输16或32位数据的传输模式的平均数据传输速率在20.72%和30.62%增加,而其延迟时间降低了23.64%和35.41%。 使用增加高速缓存大小的方法,平均数据传输速率增加,但延迟时间也增加。

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