Optimal Performance of Inertial Navigation Sensors Using Pseudo Sensor Enhancement Method (PSEM) for Intelligent System Applications

Y. Madany, E. El-Badawy, Adel M. Soliman
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Abstract

The recent technology of intelligent systems is using multiple sensors to assess real-time information of the internal system states and the environmental operating conditions. In the case of sensor(s) transient faults, the dis-connection of the readings causes inappropriate actions. So the need for sensor fault detecting and estimating multiple sensor faults becomes an important issue to optimize and enhance the system performance. Redundant sensors can provide highly accurate sensor data and also reconfigure sensor network systems if some sensors failed. In this paper, optimal sensor configurations are investigated using a new proposed pseudo sensor enhancement method (PSEM). Fault detection prediction analysis of multi-sensor architecture is introduced to study different number of sensors with different arrangement architectures and to detect transient faults in each sensor. Then, the proposed PSEM is investigated to isolate and compensate for the transient faults. The simulation results of different sensor architecture configurations with applying the PSEM have been obtained and analyzed to demonstrate the enhancement in operational performance of the proposed method to meet the requirements for multiple sensor intelligent systems.
基于伪传感器增强方法的智能系统惯性导航传感器性能优化
智能系统的最新技术是使用多个传感器来评估系统内部状态和环境运行条件的实时信息。在传感器瞬态故障的情况下,读数断开会导致不适当的动作。因此,传感器故障检测和多传感器故障估计成为优化和提高系统性能的重要问题。冗余传感器可以提供高精度的传感器数据,并在某些传感器故障时重新配置传感器网络系统。本文采用一种新的伪传感器增强方法(PSEM)研究了传感器的最优配置。引入多传感器结构的故障检测预测分析,研究不同数量、不同排列结构的传感器,检测每个传感器的暂态故障。然后,研究了该方法对暂态故障的隔离和补偿。通过对不同传感器结构配置下的仿真结果进行分析,验证了该方法在满足多传感器智能系统需求方面的性能提升。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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