Design and development of MEMS quartz gyroscope measurement and control circuit with automatic gain control principle

IF 1.8 4区 物理与天体物理 Q3 PHYSICS, APPLIED Modern Physics Letters B Pub Date : 2023-12-02 DOI:10.1142/s0217984923420150
Cheng Ma, Shuang Leng, Shanshan Cao
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Abstract

Angular velocity is a very important measurement parameter for autonomous driving and industrial applications. The design of MEMS quartz gyro measurement and control circuit has always been the key to restricting the measurement angular velocity performance of gyro system. This paper introduces the application-specific integrated circuit (ASIC) design and implementation of a MEMS quartz gyro measurement and control circuit for angular velocity measurement. The designed nonlinear multiplier can use a square wave to drive the gyro’s sensitive structure at the beginning of gyro start-up, thereby reducing the gyro power-up time. The drive circuit replaces the PLL with an automatic gain control unit composed of peak detection and proportional integration (PI) controller, which makes the MEMS gyro system have good robustness. First, SIMULINK is used to model and simulate the MEMS gyroscope system-level model, which illustrates the feasibility of the drive circuit design scheme. Then, the operating principle of the drive loop is analyzed, and the design of the key circuit modules of the measurement and control circuit is introduced. Finally, the performance of the gyroscope drive and detection circuit is experimentally tested, the amplitude and frequency uncertainty of the gyroscope drive circuit are evaluated, and the bias instability and nonlinearity of the gyroscope are tested, the experiment results show that the gyroscope has good performance.
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利用自动增益控制原理设计和开发 MEMS 石英陀螺仪测量和控制电路
角速度是自动驾驶和工业应用中非常重要的测量参数。MEMS石英陀螺测控电路的设计一直是制约陀螺系统测量角速度性能的关键。本文介绍了一种用于角速度测量的MEMS石英陀螺测量控制电路的专用集成电路(ASIC)设计与实现。所设计的非线性乘法器可以在陀螺启动初期利用方波驱动陀螺的敏感结构,从而缩短了陀螺的上电时间。该驱动电路采用由峰值检测和比例积分(PI)控制器组成的自动增益控制单元取代锁相环,使MEMS陀螺系统具有良好的鲁棒性。首先,利用SIMULINK对MEMS陀螺仪系统级模型进行建模和仿真,验证了驱动电路设计方案的可行性。然后,分析了驱动回路的工作原理,介绍了测控电路中关键电路模块的设计。最后,对陀螺仪驱动和检测电路的性能进行了实验测试,对陀螺仪驱动电路的幅值和频率的不确定度进行了评估,并对陀螺仪的偏置不稳定性和非线性进行了测试,实验结果表明陀螺仪具有良好的性能。
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来源期刊
Modern Physics Letters B
Modern Physics Letters B 物理-物理:凝聚态物理
CiteScore
3.70
自引率
10.50%
发文量
235
审稿时长
5.9 months
期刊介绍: MPLB opens a channel for the fast circulation of important and useful research findings in Condensed Matter Physics, Statistical Physics, as well as Atomic, Molecular and Optical Physics. A strong emphasis is placed on topics of current interest, such as cold atoms and molecules, new topological materials and phases, and novel low-dimensional materials. The journal also contains a Brief Reviews section with the purpose of publishing short reports on the latest experimental findings and urgent new theoretical developments.
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