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首页> 外文期刊>Transactions of the Canadian Society for Mechanical Engineering >MODELING AND NUMERICAL SIMULATION OF AN ALGORITHM FOR THE INERTIAL SENSORS ERRORS REDUCTION AND FOR THE INCREASE OF THE STRAP-DOWN NAVIGATOR REDUNDANCY DEGREE IN A LOW COST ARCHITECTURE
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MODELING AND NUMERICAL SIMULATION OF AN ALGORITHM FOR THE INERTIAL SENSORS ERRORS REDUCTION AND FOR THE INCREASE OF THE STRAP-DOWN NAVIGATOR REDUNDANCY DEGREE IN A LOW COST ARCHITECTURE

机译:低成本架构中减少惯性传感器误差并增加向下导航器冗余度的算法的建模和数值模拟

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摘要

In this paper, an algorithm for the inertial sensors errors reduction in a strap-down inertial navigation system, using several miniaturized inertial sensors for each axis of the vehicle frame, is conceived. The algorithm is based on the idea of the maximum ratio-combined telecommunications method. We consider that it would be much more advantageous to set a high number of miniaturized sensors on each input axis of the strap-down inertial system instead of a single one, more accurate but expensive and with larger dimensions. Moreover, a redundant system, which would isolate any of the sensors in case of its malfunctioning, is obtained. In order to test the algorithm, Simulink code is used for algorithm and for the acceleration inertial sensors modeling. The Simulink resulted sensors models include their real errors, based on the data sheets parameters, and were conceived based on the IEEE analytical standardized accelerometers model. An integration algorithm is obtained, in which the signal noise power delivered to the navigation processor, is reduced, proportionally with the number of the integrated sensors. At the same time, the bias of the resulted signal is reduced, and provides a high redundancy degree for the strap-down inertial navigation system at a lower cost than at the cost of more accurate and expensive sensors.
机译:本文提出了一种在捷联惯性导航系统中减少惯性传感器误差的算法,该算法针对车架的每个轴使用几个小型化的惯性传感器。该算法基于最大比率组合电信方法的思想。我们认为,在捷联惯性系统的每个输入轴上设置大量的微型传感器,而不是单个的传感器,更为精确但昂贵且尺寸较大,这将更为有利。此外,获得了冗余系统,该冗余系统在发生故障的情况下将隔离任何传感器。为了测试算法,将Simulink代码用于算法和加速惯性传感器建模。 Simulink生成的传感器模型包括基于数据表参数的实际误差,并且是基于IEEE分析标准化加速度计模型构想的。获得一种集成算法,其中,与集成传感器的数量成比例地降低了传递到导航处理器的信号噪声功率。同时,所产生的信号的偏差被减小,并且以比以更精确和昂贵的传感器为代价的成本更低的成本为捷联式惯性导航系统提供了高冗余度。

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