拼接镜面望远镜位移促动器高精度反馈研究
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1.南京信息工程大学电子与信息工程学院 南京 210044; 2.中国科学院南京天文光学技术研究所 南京 210042; 3.中国科学院大学 北京 100049

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TP273;TN79

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Research on high-precision feedback for displacement actuators in segmented mirror telescopes
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1.School of Electronics and Information Engineering, Nanjing University of Information Science and Technology, Nanjing 210044, China; 2.Nanjing Institute of Astronomical Optics & Technology, Chinese Academy of Sciences,Nanjing 210042, China; 3.University of Chinese Academy of Sciences,Beijing 100049, China

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    摘要:

    针对拼接镜面望远镜位移促动器编码器协议封闭,现有解码方案功耗大、体积大等问题,提出了一种基于SoC-FPGA技术的高精度位置反馈系统,实现EnDat2.2协议的开放式解码,以满足国产化替代对于小型化、低功耗与高集成度的需求。采用Zynq-7000平台构建PS-PL协同处理架构。PS端以双核Cortex-A9核心完成系统控制与通信调度;PL端以硬件逻辑实现曼彻斯特编解码与CRC-5校验。设计以ADM1485和ADuM1301为核心的驱动接口电路,增强抗干扰能力。并利用IDELAYE2模块进行动态时序补偿,解决物理链路差异导致的数据相位偏移问题。实验表明,系统位置反馈精度达到368 nm。大规模错误注入测试表明,CRC-5校验在0.2%错误率下的检测成功率达99.99%,PCB体积约减少31.6%,功耗水平下降超11倍。成功实现了EnDat2.2协议的高可靠性解码,为我国天文望远镜及高精度数控装备的位移控制小型化、低功耗与高集成度提供了关键技术支撑,具有重要的工程应用价值和自主推广意义,未来可进一步优化算法以提升极端环境下的稳定性。

    Abstract:

    Aiming at the problems such as the closed encoder protocol of the displacement actuator of the spliced mirror telescope and the high power consumption and large volume of the existing decoding schemes, a high-precision position feedback system based on SoC-FPGA technology is proposed to realize the open decoding of the EnDat2.2 protocol, in order to meet the requirements of miniaturization, low power consumption and high integration for domestic substitution. The PS-PL collaborative processing architecture is constructed using the Zynq-7000 platform. The PS end uses the dual-core Cortex-A9 core to complete system control and communication scheduling. The PL end implements Manchester codec and CRC-5 verification through hardware logic. Design a driver interface circuit centered on ADM1485 and ADuM1301 to enhance the anti-interference capability. And the IDELAYE2 module is utilized for dynamic timing compensation to solve the problem of data phase offset caused by physical link differences. Experiments show that the position feedback accuracy of the system reaches 368 nm. Large-scale error injection tests demonstrate that the CRC-5 verification achieves a detection success rate of 99.99% at a 0.2% error rate, while the PCB volume is reduced by approximately 31.6% and the power consumption is lowered by more than 11 times. This solution successfully realizes high-reliability decoding of the EnDat2.2 protocol, providing crucial technical support for the miniaturization, low power consumption and high integration of displacement control systems in China′s astronomical telescopes and high-precision numerical control equipment. It holds significant engineering application value and potential for independent promotion. Future work may further optimize algorithms to enhance stability under extreme conditions.

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徐云霞,陆启帅,姚富金,韩硕.拼接镜面望远镜位移促动器高精度反馈研究[J].电子测量技术,2026,49(13):90-99

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  • 在线发布日期: 2026-09-08
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