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A digital interface for gyroscopes controlling the primary and secondary mode using bandpass sigma-delta modulation

机译:陀螺仪的数字接口,使用带通sigma-delta调制来控制主模式和辅助模式

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This paper demonstrates a micro-electro-mechanical gyroscope system with extensive use of sigma-delta (ΣΔ) modulation in both, primary and secondary modes. Both control schemes are implemented digitally on a field programmable gate array (FPGA). The primary loop has a bandpass ΣΔ digital-to-analog converter (DAC) driving the primary mass into resonance using a two-level driver. With this strategy of replacing the discrete DAC of the primary oscillation control with a bandpass ΣΔ-DAC, the analog circuit complexity is enormously reduced. The Coriolis rate signal is converted into a bit stream with a new excess loop delay (ELD) compensated micro-electro-mechanical ΣΔ modulator (ΣΔM) incorporating the gyroscope in the loop with a second-order electrical bandpass filter (BPF). To investigate the ELD effect, this electro-mechanical ΣΔM is implemented on the FPGA emulating continuous-time (CT) behavior. Measurements show stable modulators, with an ELD of nearly one clock period of the sampled system, achieving in-band noise (IBN) below -60 dBFS. The full-scale (FS) is measured to 1019°/s. This paper demonstrates that the stability of ΣΔ modulators with large ELD can be ensured with the new ELD compensation technique.
机译:本文演示了一种微机电陀螺仪系统,该系统在一次和二次模式下都广泛使用了sigma-delta(ΣΔ)调制。两种控制方案都在现场可编程门阵列(FPGA)上以数字方式实现。初级回路具有带通ΣΔ数模转换器(DAC),它使用两级驱动器将初级质量驱动为谐振状态。通过采用带通ΣΔ-DAC代替主振荡控制的分立DAC的策略,极大地降低了模拟电路的复杂度。将科里奥利速率信号转换为具有新的过剩环路延迟(ELD)补偿的微机电ΣΔ调制器(ΣΔM)的位流,该调制器将陀螺仪集成在具有二阶电带通滤波器(BPF)的环路中。为了研究ELD效应,该机电ΣΔM在FPGA上实现,以模拟连续时间(CT)行为。测量表明,稳定的调制器具有接近采样系统一个时钟周期的ELD,可实现低于-60 dBFS的带内噪声(IBN)。满量程(FS)的测量值为1019°/ s。本文证明,采用新的ELD补偿技术可以确保具有大ELD的ΣΔ调制器的稳定性。

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