• DocumentCode
    500860
  • Title

    Stochastic steady-state and AC analyses of mixed-signal systems

  • Author

    Kim, Jaeha ; Ren, Jihong ; Horowitz, Mark A.

  • Author_Institution
    Stanford Univ., Stanford, CA, USA
  • fYear
    2009
  • fDate
    26-31 July 2009
  • Firstpage
    376
  • Lastpage
    381
  • Abstract
    This paper demonstrates that the steady-state and adjoint sensitivity analyses can be extended to stochastic mixed-signal systems based on Markov chain models. The examples of such systems include digital phase-locked loops and delta-sigma data converters, of which steady-state response is statistical in nature, consisting of an ensemble of waveforms with probability distribution. For efficient Markov-chain analysis, the paper describes three methods that can limit the number of states: a state discretization scheme based on Gaussian decomposition, a state exploration algorithm that discovers the recurrent states, and a state truncation algorithm that eliminates the states with negligible stationary probabilities. The stochastic AC analysis is performed by deriving a first-order ordinary differential equation governing the perturbations in the stationary probabilities and solving it via phasor analysis. In the digital PLL and first-order DeltaSigma ADC examples, the number of states was reduced by a factor of 35 and the frequency-domain phase and noise transfer functions were simulated with a 57~22,000times speed-up compared to using transient, Monte-Carlo simulations.
  • Keywords
    Markov processes; differential equations; mixed analogue-digital integrated circuits; probability; stochastic processes; Gaussian decomposition; Markov chain model; adjoint sensitivity analysis; first-order ordinary differential equation; mixed-signal system; phasor analysis; probability distribution; state discretization scheme; state exploration algorithm; state truncation algorithm; stochastic AC analysis; stochastic steady-state analysis; Algorithm design and analysis; Differential equations; Frequency domain analysis; Performance analysis; Phase locked loops; Probability distribution; Sensitivity analysis; Steady-state; Stochastic resonance; Stochastic systems; Markov chains; adjoint sensitivity analysis; steady-state analysis; stochastic systems;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Design Automation Conference, 2009. DAC '09. 46th ACM/IEEE
  • Conference_Location
    San Francisco, CA
  • ISSN
    0738-100X
  • Print_ISBN
    978-1-6055-8497-3
  • Type

    conf

  • Filename
    5227117