ﻻ يوجد ملخص باللغة العربية
Gyroscopes are widely used in various field. The instability of the low-cost gyroscopes makes them need to be calibrated on every boot. To meet the requirement of frequency calibration, finding an efficient in-field calibration method is essential. This paper proposes a fast calibration method that does not require any external equipment. We use the manual rotation angle as a calibration reference and linearize the calibration model. On the basis of this model, a G-optimal experimental design scheme is proposed, which can get enough calibration information with the least number of experiments. The simulations indicate that the calibration error is relatively low, and the results are unbiased. We empirically validate the effectiveness of the proposed method on two commonly used low-cost gyroscope and achieve real-time calibration on a low-energy microcontroller. We validate the proposed method by comparing the above method with the conventional turntable method. The experiment result shows that the error between these two methods is less than $pm3 times 10^{-2}$ and the calibration process takes less than 30 seconds. This method might have a practical implication for low-cost gyroscope calibration.
This paper presents an efficient servomotor-aided calibration method for the triaxial gyroscope. The entire calibration process only requires approximately one minute, and does not require high-precision equipment. This method is based on the idea th
In this paper, we present a virtual control contraction metric (VCCM) based nonlinear parameter-varying (NPV) approach to design a state-feedback controller for a control moment gyroscope (CMG) to track a user-defined trajectory set. This VCCM based
An autonomous adaptive MPC architecture is presented for control of heating, ventilation and air condition (HVAC) systems to maintain indoor temperature while reducing energy use. Although equipment use and occupant changes with time, existing MPC me
This paper provides an exponential stability result for the adaptive anti-unwinding attitude tracking control problem of a rigid body with uncertain but constant inertia parameters, without requiring the satisfaction of persistent excitation (PE) con
Coordinating multiple local power sources can restore critical loads after the major outages caused by extreme events. A radial topology is needed for distribution system restoration, while determining a good topology in real-time for online use is a