Статистика и вероятность
Проверенный калькулятор с прозрачной формулой
Allan Variance Calculator.
Estimates the Allan variance and deviation of a dataset from a single sample of phase or frequency measurements, given the sample size and measurement interval.
Ваши данные
Как это работает
- 1
Enter the number of samples, averaging time, and phase noise.
- 2
The calculator computes the Allan variance as phase noise squared divided by tau squared times (sample size minus one).
- 3
The Allan deviation is the square root of the variance.
- 4
Review the results and adjust inputs as needed.
(phase_noise^2) / (tau^2 * max(sample_size - 1, 1))Часто задаваемые вопросы
What does Allan variance measure?
It quantifies frequency stability as a function of averaging time, helping identify noise types in clocks and oscillators.
Why use sample size minus one?
This approximates the degrees of freedom in the variance estimate, similar to sample variance.
Can I use this for any dataset?
This simplified version assumes white phase noise; for other noise types, more complex estimators are needed.
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Результаты
Формула проверенаОценка только для общего руководства — проверяйте важные решения с соответствующим специалистом.
Как это работает
Estimates the Allan variance and deviation of a dataset from a single sample of phase or frequency measurements, given the sample size and measurement interval.
- Enter the number of samples, averaging time, and phase noise.
- The calculator computes the Allan variance as phase noise squared divided by tau squared times (sample size minus one).
- The Allan deviation is the square root of the variance.
- Review the results and adjust inputs as needed.
Формулы
Математика, лежащая в основе этого калькулятора, изложена так, чтобы вы могли проверить результат.
Allan Variance (simplified)
Estimates variance from phase noise σ_φ, averaging time τ, and sample count N.
Примеры из реальной жизни
Где этот расчет встречается в повседневной жизни.
Oscillator stability
Compare short-term and long-term frequency stability of quartz or atomic clocks.
Example: Evaluate a 10 MHz oscillator with τ from 1 ms to 100 s.
Sensor noise characterization
Assess gyroscope or accelerometer noise for inertial navigation systems.
Example: Determine optimal averaging time for a MEMS gyro.
Советы и частые ошибки
Tips
- Use a larger sample size for more reliable estimates.
- Choose tau values spanning decades to see noise type transitions.
- Ensure phase noise is in radians, not degrees.
Common Mistakes to Avoid
- Using sample size instead of sample size minus one.
- Forgetting to square the phase noise.
- Mixing units (e.g., degrees instead of radians).
Допущения и ограничения
- Use the stated inputs and units.
- Results are estimates for planning and education.
- Check measurements and source data before making an important decision.