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Velocity Error Analysis of INS-Aided Satellite Receiver Third-Order Loop Based on Discrete Model

机译:基于离散模型的惯导辅助卫星接收机三阶环路速度误差分析

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Traditionally, continuous model is usually applied to analyze the velocity error of INS-aided GNSS receiver. However, the actual implemented system is discrete. In consequence, the analysis results based on continuous model are iffy. Aimed at this problem, this paper establishes a discrete model of INS-aided third-order carrier loop according to the actual system. Then, the velocity error caused by discretization is investigated and the error mechanism is analyzed. Analysis and simulation results show that the delay of aiding information is the main error source of INS aided GNSS receiver in high dynamic scene. To improve the dynamic performance of INS-aided carrier loop efficiently, the delay of aiding information should be shortened as much as possible.
机译:传统上,通常采用连续模型来分析INS辅助GNSS接收机的速度误差。但是,实际实施的系统是离散的。因此,基于连续模型的分析结果是不确定的。针对这个问题,本文根据实际系统建立了一个由INS辅助的三阶载波环路的离散模型。然后,研究了离散引起的速度误差,并分析了误差机理。分析和仿真结果表明,在高动态场景下,辅助信息的延迟是INS辅助GNSS接收机的主要误差源。为了有效地提高INS辅助载波环路的动态性能,应尽可能缩短辅助信息的延迟。

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