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In order to improve the navigation accuracy of an inertial navigation system (INS), composed of quartz gyroscopes, the existing real-time compensation methods for periodic errors in quartz gyroscope drift and the periodic error term relationship between sampled original data and smoothed data are reviewed. On the base of the results, a new compensation method called using former period characteristics to compensate latter smoothness data (UFCL for short) method is proposed considering the INS working characteristics. This new method uses the original data without smoothing to work out an error conversion formula at the INS initial alignment time and then compensate the smoothed data errors by way of the formula at the navigation time. Both theoretical analysis and experimental results demonstrate that this method is able to cut down on computational time and raise the accuracy which makes it a better real-time compensation approach for periodic error terms of quartz micro electronic mechanical system (MEMS) gyroscope's zero drift.  相似文献   
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为了实现涡轮冲压组合发动机(简称组合发动机)燃油系统温升仿真计算,基于Flowmaster软件平台首次建立了组合发动机燃油系统温升仿真计算模型,为提高精度,根据试验数据自定义了航空煤油随温度压力变化的物性模块代替软件内置物性模块,基于此进行仿真计算得到不同工作模态下燃油系统温升情况。计算结果表明:涡轮模态工况下自定义物性模块计算得到的主要节点温升与软件内置物性模块相比总体偏低,且压力变化越大计算结果偏差越大;模态转换期间各子燃油系统流量迅速变化对燃油温度影响十分显著;冲压模态工况下燃油流量为2.68倍主燃烧室燃油流量时,可承受的最大发动机热负荷为400kW,最大飞行马赫数为5。实现了对发动机燃烧室入口燃油温度的预测和评估。  相似文献   
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