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951.
电感传感器金属探测定位系统设计 总被引:3,自引:0,他引:3
本文以 LDC1000电感传感器以及飞思卡尔 Kinetis 系列微控制器 K60为核心,组成具有定位功能的金属探测系统。通过金属的涡流效应,对金属物体进行检测,能够在一定范围内迅速定位出金属物体的精确位置。经实验表明,距离物体中心定位误差不超过4 mm,最小可以检测出2 cm2大小的金属物体。测量数据在单片机中进行处理,软件上采用了数字滤波,进一步减少了误差干扰信号,提高了系统的稳定性与精确性。该系统可通过 LCD 液晶显示屏显示当前金属物体所在具体位置,并利用按键实现人机交互。 相似文献
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Android操作系统以开源、界面友好等特点在智能手机、智能手表等可穿戴设备中广泛应用.设备之间通过蓝牙通信进行信息的交互,为了实现远程控制功能,需自定义蓝牙数据结构,实现对普通数据信息和控制信息的区分.在实例中实现了Android手机之间远程控制拍摄照片以及实时预览图像的功能.采用RC4和RSA混合加密方式对蓝牙发送的数据进行加密,来保证发送数据的安全性. 相似文献
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A modified dynamic surface approach for control of nonlinear systems with unknown input dead zone 下载免费PDF全文
This paper focuses on the robust output precise tracking control problem of uncertain nonlinear systems in pure‐feedback form with unknown input dead zone. By designing an extended state observer, the states unmeasurable problem in traditional feedback control is solved, and the lumped uncertainty, which is caused by system unknown functions and input dead zone, is estimated. In order to apply separation principle, finite‐time extended state observer is designed to obtain system states and estimate the lumped uncertainty. Then, by introducing tracking differentiator, a modified dynamic surface control approach is developed to eliminate the ‘explosion of complexity’ problem and guarantee the tracking performance of system output. Because tracking differentiator is a fast precise signal filter, the closed‐loop control performance is significantly improved when it is used in dynamic surface control instead of first‐order filters. The L ∞ stability of the whole closed‐loop system, which guarantees both the transient and steady‐state performance, is shown by the Lyapunov method and initialization technique. Numerical and experiment examples are performed to illustrate our proposed control scheme with satisfactory results. Copyright © 2013 John Wiley & Sons, Ltd. 相似文献
957.
The problem of the stability of a linear system with an interval time‐varying delay is investigated. A new Lyapunov–Krasovskii functional that fully uses information about the lower bound of the time‐varying delay is constructed to derive new stability criteria. It is proved that the proposed Lyapunov–Krasovskii functional can lead to less conservative results than some existing ones. Based on the proposed Lyapunov–Krasovskii functional, two stability conditions are developed using two different methods to estimate Lyapunov–Krasovskii functional's derivative. Two numerical examples are given to illustrate that the two stability conditions are complementary and yield a larger maximum upper bound of the time‐varying delay than some existing results. Copyright © 2013 John Wiley & Sons, Ltd. 相似文献
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Yanzhang Wang Shujun Wu Hao Lu Defu Cheng Chen Chen Na Pang Yunxia Wan Zhijian Zhou Siyu Chen 《中国科学:信息科学(英文版)》2016,59(11):112213
The output performance of residence times difference (RTD) fluxgate may vary under different driving conditions (driving currents and frequencies) and core materials. To optimize the RTD fluxgate and simplify its design process, an analytical model is employed to select the parameters and identify the effective factors that dominate the performance. The dynamic permeability parameters (Pi), which reflect the changes in the magnetization curve, are mathematically analyzed in detail. The linear variation functions of Pi in different driving conditions are fitted by using the dynamic arctangent hysteresis model. Consequently, the selection of driving conditions and core materials, which are assessed by comparing the experiment and simulation results, has an important role in achieving the optimal output performance of the RTD fluxgate. 相似文献
960.
This paper proposes a general method for dealing with the problem of recovering the low-rank structure, in which the data can be deformed by some unknown transformations and corrupted by sparse or nonsparse noises. Nonconvex penalization method is used to remedy the drawbacks of existing convex penalization method and a quadratic penalty is further used to better tackle the nonsparse noises in the data. We exploits the local linear approximation (LLA) method for turning the resulting nonconvex penalization problem into a series of weighted convex penalization problems and these subproblems are efficiently solved via the augmented Lagrange multiplier (ALM). Besides comparing with the method of robust alignment by sparse and low-rank decomposition for linearly correlated images (RASL), we also propose a nonconvex penalized lowrank and sparse decomposition (NLSD) model as comparison. Numerical experiments are conducted on both controlled and uncontrolled data to demonstrate the outperformance of the proposed method over RASL and NLSD. 相似文献