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引用次数: 0
摘要
电涡流位移传感器(ECDS)以其非接触性、高分辨率和适合实时控制而闻名,它利用电磁感应原理检测导电目标位置的细微变化。电涡流位移传感器与外部仪器之间的接口是影响信号调节、降噪、与现代数据采集系统兼容性以及动态测量环境适应性的关键环节。本文介绍了一种用于实时控制 AMB 的新型直接数字调频(FM)ECDS 接口。首先,构建了一个调频涡流间隙传感器,并利用所提出的直接数字接口检测其 LC 振荡频率变化。直接数字接口具有配置简单、抗噪和适应性强等显著优势。特别是,DSP 的内部 SW(软件)预刻度和外部 HW(硬件)预刻度(如计数器)共同用于平衡静态和动态性能,为实时应用提供了适中的分辨率和足够的稳定性。最后,通过测量一维 AMB 系统的悬浮抖动和闭环灵敏度函数,研究了调频涡流间隙传感器的静态和动态性能。
Novel Direct Digital Interface of Frequency-Modulated Eddy-Current Displacement Sensor (ECDS) for Real-Time Control of AMB
Renowned for its non-contact nature, high-resolution capabilities, and suitability for real-time control, ECDS (eddy current displacement sensor) operates on electromagnetic induction principles to detect even the minutest changes in the position of conductive targets. The interface between an ECDS and external instrumentation stands as a critical juncture influencing signal conditioning, noise reduction, compatibility with modern data acquisition systems, and adaptability to dynamic measurement environments. This paper presents a novel direct digital interface of frequency-modulated (FM) ECDS for real-time control of AMB. First, an FM eddy-current gap sensor is built, and its LC oscillation frequency variation is detected with the proposed direct digital interface. The direct digital interface has several distinct advantages such as simple configuration, noise immunity, and adaptability. In particular, both the DSP's internal SW (software) prescale and an external HW (hardware) prescale, such as a counter are used together to balance the static and dynamic performances, which offers moderate resolution and sufficient stability for real-time applications. Finally, both the static and dynamic performances of the FM eddy-current gap sensor are investigated by measuring the levitation jitter and closed-loop sensitivity function of the one-DOF AMB system.
期刊介绍:
The International Journal of Precision Engineering and Manufacturing accepts original contributions on all aspects of precision engineering and manufacturing. The journal specific focus areas include, but are not limited to:
- Precision Machining Processes
- Manufacturing Systems
- Robotics and Automation
- Machine Tools
- Design and Materials
- Biomechanical Engineering
- Nano/Micro Technology
- Rapid Prototyping and Manufacturing
- Measurements and Control
Surveys and reviews will also be planned in consultation with the Editorial Board.