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101.
感应同步器鉴幅测角系统静态误差分析及关键电路设计 总被引:2,自引:1,他引:2
本文系统论述了采用感应同步器进行角位置测量的连续绕组激磁,分段绕组输出的鉴幅方案,对这个方案的工作原理进行介绍,并对此方案产生的静态误差进行分析,给出减小误差的方法,最后得出相关结论。 相似文献
102.
数字滤波器在惯性测量装置中的应用 总被引:2,自引:2,他引:2
分析了数字电压表和数字示波器对惯性测量装置(IMU)模拟输出的测量数据,为了减少惯性测量装置模拟输出中的干扰信号对模数转换结果的影响,设计了数字巴特沃斯滤波器和中值平均滤波器。通过计算机仿真和实测说明:这两种数字滤波方法均可以在几乎不增加硬件的条件下提高IMU数字输出精度。 相似文献
103.
异质传感器数据的最优线性融合 总被引:7,自引:1,他引:7
研究了异质传感器对参数矢量进行的测量,测量数据基于线性均方估计的最优融合算法。提出和证明了异质传感器数据的最优线性融合定理,并得出“精度再差的传感器参与数据融合后都有利于提高系统的测量精度”这一结论。 相似文献
104.
105.
高精度转台控制系统研究 总被引:1,自引:0,他引:1
—本文针对精密转台控制系统在大偏差下的不稳定问题,对其控制系统进行了分析和设计,同时对其高分辨率的指令系统进行了设计,为提高转台的精度及其动态性能提供了新的途径。 相似文献
106.
Based on the successive iteration in the Taylor series expansion method,a three-point explicit compact difference scheme with arbitrary order of accuracy is derived in this paper.Numerical characteristics of the scheme are studied by the Fourier analysis. Unlike the conventional compact difference schemes which need to solve the equation to obtain the unknown derivatives in each node,the proposed scheme is explicit and can achieve arbitrary order of accuracy in space.Application examples for the convection- diffusion problem with a sharp front gradient and the typical lid-driven cavity flow are given.It is found that the proposed compact scheme is not only simple to implement and economical to use,but also is effective to simulate the convection-dominated problem and obtain high-order accurate solution in coarse grid systems. 相似文献
107.
Based on the successive iteration in the Taylor series expansion method, a three-point explicit compact difference scheme with arbitrary order of accuracy is derived in this paper. Numerical characteristics of the scheme are studied by the Fourier analysisl Unlike the conventional compact difference schemes which need to solve the equation to obtain the unknown derivatives in each node, the proposed scheme is explicit and can achieve arbitrary order of accuracy in space. Application examples for the convectiondiffusion problem with a sharp front gradient and the typical lid-driven cavity flow are given. It is found that the proposed compact scheme is not only simple to implement and economical to use, but also is effective to simulate the convection-dominated problem and obtain high-order accurate solution in coarse grid systems. 相似文献
108.
109.
《Journal of separation science》2017,40(18):3612-3620
The linear solvent strength model was used to predict coverage in online comprehensive two‐dimensional reversed‐phase liquid chromatography. The prediction model uses a parallelogram to describe the separation space covered with peaks in a system with limited orthogonality. The corners of the parallelogram are assumed to behave like chromatographic peaks and the position of these pseudo‐compounds was predicted. A mix of 25 polycyclic aromatic compounds were used as a test. The precision of the prediction, span 0–25, was tested by varying input parameters, and was found to be acceptable with root mean square errors of 3. The accuracy of the prediction was assessed by comparing with the experimental coverages. Less than half of experimental coverages were outside prediction ± 1 × root mean square error and none outside prediction ± 2 × root mean square error. Accuracy was lower when retention factors were low, or when gradient conditions affected parameters not included in the model, e.g. second dimension gradient time affects the second dimension equilibration time. The concept shows promise as a tool for gradient optimization in online comprehensive two‐dimensional liquid chromatography, as it mitigates the tedious registration and modeling of all sample constituents, a circumstance that is particularly appealing when dealing with complex samples. 相似文献
110.
This paper presents a new spectral model for solving the fully nonlinear potential flow problem for water waves in a single horizontal dimension. At the heart of the numerical method is the solution to the Laplace equation which is solved using a variant of the ‐transform. The method discretizes the spatial part of the governing equations using the Galerkin method and the temporal part using the classical fourth‐order Runge‐Kutta method. A careful investigation of the numerical method's stability properties is carried out, and it is shown that the method is stable up to a certain threshold steepness when applied to nonlinear monochromatic waves in deep water. Above this threshold artificial damping may be employed to obtain stable solutions. The accuracy of the model is tested for: (i) highly nonlinear progressive wave trains, (ii) solitary wave reflection, and (iii) deep water wave focusing events. In all cases it is demonstrated that the model is capable of obtaining excellent results, essentially up to very near breaking. 相似文献