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Implementation of an incremental optical encoder for submicroradian measurement of gimbal pointing angles

机译:用于亚微弧度测量万向节指向角的增量式光学编码器的实现

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Abstract: The implementation of an incremental optical encoder for measurement of gimbal pointing angles is discussed. The application described is typical of many programs being conducted at SVS Systems, Inc. Performance requirements such as resolution, accuracy, bandwidth, size, and weight are described and the advantages of using the optical encoder instead of more 'traditional' technologies are given. The resolution of the optical encoders is on the order of 20 nanoradians. Disadvantages to using the optical incremental encoders are discussed as implementation challenges. An overview of how these challenges were overcome is described. A control system implementation using the encoders for gimbal stabilization is presented, including simulations result. The combination of resolution, repeatability, and accuracy of the encoders opens new possibilities for gimbal stabilization without rate sensors attached to the pointing mirror, as shown through simulation. Test results verifying the proper operation of the encoder are presented. !3
机译:摘要:讨论了用于测量云台指向角的增量式光学编码器的实现。所描述的应用程序是SVS Systems,Inc.进行的许多程序的典型代表。描述了诸如分辨率,精度,带宽,大小和重量之类的性能要求,并给出了使用光学编码器代替更多“传统”技术的优势。光学编码器的分辨率约为20纳弧度。讨论使用光学增量式编码器的缺点是实现方面的挑战。描述了如何克服这些挑战的概述。提出了使用编码器进行云台稳定化的控制系统实现,包括仿真结果。编码器的分辨率,可重复性和精度的结合为万向架稳定提供了新的可能性,而无需将速率传感器安装在指向镜上,如仿真所示。给出了验证编码器正常运行的测试结果。 !3

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