首页|速度平滑距离与Vondrak平滑方法在高精度测量中的比较应用

速度平滑距离与Vondrak平滑方法在高精度测量中的比较应用

Comparison of Velocity Smooth Distance and Vondrak Smoothing Method in High Precision Measurement

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随着卫星定位以及测定轨精度的提高,需要研究厘米量级的高精度测距系统;针对现有测控系统测量距离值存在较大随机误差的问题,提出了一种基于速度对距离值进行平滑的方法,以减小测距随机误差,并将之与Vondrak平滑方法作了对比;为了保证速度的解算精度,给出了一种基于三阶锁相环路的跟踪接收方案,并对环路跟踪精度、速度平滑时间选择及优化等进行分析和仿真;仿真结果表明,新提出的接收方案和速度平滑距离方法能够实现对不同动态目标信号的有效跟踪,有效降低距离测量的随机误差,可为高精度航天测控系统提供一种解决思路.
With the improvement of satellite positioning and orbit determination,high accuracy ranging system in cm level is needed to study.To the question about the existing of big random error in normal measurement and control system,this paper proposes a method that using velocity value to smooth range in order to reduce the range random error,and compare it with the Vondrak smoothing method.For the calculating precision of velocity,this paper gives a tracking receiving scheme based on third order phase-locked loop,what's more,we carry on analysis and simulation about loop tracking accuracy and smoothing time.The simulation results show that the receiving scheme we proposed and the method of smoothing range using velocity can ensure the effective tracking with different dynamic target signal and can effectively reduce the pseudorange measurement random error,it can provide a solution for high precision aerospace measurement and control system.

Ranging in cm levelThird-order phase-locked loopRange random errorVelocity smooth distanceVondrak smoothing

于晴、耿虎军、郭肃丽

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中国电子科技集团公司第五十四研究所,石家庄050081

厘米级测距 三阶锁相环 测距随机误差 速度平滑距离 Vondrak平滑

国家863计划军口部分课题中国电子科技集团公司航天信息应用技术重点实验室开放基金资助项目

EX166290012

2017

计算机测量与控制
中国计算机自动测量与控制技术协会

计算机测量与控制

CSTPCD
影响因子:0.546
ISSN:1671-4598
年,卷(期):2017.25(11)
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