基于PowerBus总线的试飞测试数据采集技术研究
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中国飞行试验研究院 西安 710089

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TN915.41

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Research on test flight data acquisition technology based on PowerBus bus
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Chinese Flight Test Establishment,Xi′an 710089,China

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    摘要:

    在机载测控领域,传感器的模拟量形式输出常受限于信号传输距离和电磁干扰的影响,导致信号失真和精度下降的问题,难以满足试飞测试对高精度数据采集的需求。此外,对于温度、压力等变化相对缓慢的信号,传统点对点多线制连接方式带来了布线复杂、安装成本高及系统灵活性受限等问题。为应对上述挑战,本文提出了一种基于PowerBus总线的传感器数字化采集技术方案。该方案利用PowerBus总线的能信一体低压载波技术和二线制连接特性,结合传感器数字化转换理念,构建了一个适用于缓变信号(如温度、压力)的高性能采集系统。采集系统由PowerBus主站(总线网络节点)和PowerBus从站(数字化传感器)组成。从站负责前端(包括铂电阻、热电偶、压力传感器)传感信号的采集、调理及高精度模数转换,并将数字化后的数据通过PowerBus总线传输;主站则负责管理PowerBus网络、接收来自各从站的数据,并进行数据封装与上传。实验结果表明:该系统能够实现1 ksps的内部采样频率和16 bit有效位数的采样精度,并在PowerBus总线9 600 bps的速率限制下,实现了稳定可靠的多节点传感器数据传输,验证了该方案在机载测试等带宽受限环境下的可行性与高效性。

    Abstract:

    In the field of airborne measurement and control, the analog output of sensors is often limited by the influence of signal transmission distance and electromagnetic interference, resulting in signal distortion and accuracy reduction, which is difficult to meet the needs of high-precision data acquisition in test flight tests. In addition, for signals that change relatively slowly such as temperature and pressure, the traditional point-to-point multi-wire connection method brings problems such as complex wiring, high installation costs, and limited system flexibility. In order to solve the above challenges, this paper proposes a digital sensor acquisition technology scheme based on PowerBus bus. This solution uses the low-voltage carrier technology and two-wire connection characteristics of the PowerBus bus, combined with the concept of digital conversion of sensors, to build a high-performance acquisition system suitable for slowing signals (such as temperature and pressure). The acquisition system consists of a PowerBus master (bus network node) and a PowerBus slave station (digital sensor). The slave station is responsible for the acquisition, conditioning and high-precision analog-to-digital conversion of the front-end (including platinum resistors, thermocouples, and pressure sensors), and transmits the digitized data through the PowerBus bus. The master is responsible for managing the PowerBus network, receiving data from each slave, and encapsulating and uploading the data. The experimental results show that the system can achieve the internal sampling frequency of 1 ksps and the sampling accuracy of 16 bit effective bits, and realize stable and reliable multi-node sensor data transmission under the rate limit of 9 600 bps of PowerBus bus, which verifies the feasibility and efficiency of the scheme in bandwidth-limited environments such as airborne testing.

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闫蓉,李卢丹,尹川,吴金星.基于PowerBus总线的试飞测试数据采集技术研究[J].电子测量技术,2025,48(24):68-79

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  • 在线发布日期: 2026-02-04
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