ART
BEAUTÉ ET BIEN-ÊTRE
ARTISANAT
CULTURE ET HISTOIRE
DIVERTISSEMENT
ENVIRONNEMENT
NOURRITURE ET BOISSONS
INGÉNIERIE INVERSE
SCIENCES
SPORTS
TECHNOLOGIE
TECHNOLOGIE PORTABLE
Nyquist's Stability Criterion
Mark

Créé par

Mark

31. août 2026FI
3
0
0
0
0

Nyquist's Stability Criterion

Black's feedback amplifiers worked, and some of them sang. Adding more feedback made every measurable property better right up to the point where the amplifier turned into an oscillator, and nobody could say in advance which side of that line a new design was on. Maxwell's method cannot help. It needs the coefficients of the differential equation, and a Bell Labs repeater full of hand-wound transformers, valves and stray capacitance does not come with coefficients - you would have to guess them, and the guess is exactly what is in question. Harry Nyquist's paper of January 1932 asks a question you can answer with a signal generator instead. Send a sine wave once around the OPEN loop and look at what comes back. If at some frequency it returns the same size and exactly upside down, then joining the loop lets it sustain that sine wave with no input at all, which is what singing is. Plot what comes back over the whole frequency range and the test becomes a count: how many times does the curve go around the point minus one? Two numbers fall straight out and are still how amplifiers are specified. Gain margin is how much more gain the loop would take before it sang; phase margin is how much more lag. Both are read off a measurement of a machine you never modelled. The criterion also handles the case Maxwell's cannot touch at all: a pure time delay. A microphone a few metres from its own loudspeaker has no polynomial to write down, and Nyquist predicts the pitch of the howl and how it changes when you move the microphone.
Avancé
3 hours

Consignes

1

Make a loop howl, on purpose

Point a microphone at a loudspeaker two metres away with an amplifier between them, and raise the volume until it howls. Record it and read the pitch off the spectrum. Now halve the distance and do it again. The pitch rises, and it rises in the way the notebook predicts from the flight time of sound alone.

Matériaux pour cette étape :

Masking TapeMasking Tape1 rouleau

Outils nécessaires :

Speaker (Lab)Speaker (Lab)
Electret MicrophoneElectret Microphone
Audio Amplifier Kit - STA540Audio Amplifier Kit - STA540
Tape MeasureTape Measure
Desktop ComputerDesktop Computer
2

Measure a loop instead of modelling it

Break the feedback loop of the amplifier from the previous blueprint, drive the input from the generator and measure amplitude and phase at the far end, decade by decade. Find the frequency where the phase reaches minus 180 degrees and read the gain there. That one number is the gain margin, and you obtained it without writing down a single differential equation. Plot amplitude against phase on the graph paper as you go: that curve IS the Nyquist diagram, and you can see how close it passes to minus one.

Matériaux pour cette étape :

Graph PaperGraph Paper4 feuilles

Outils nécessaires :

DDS Signal Generator (1Hz-65MHz)DDS Signal Generator (1Hz-65MHz)
Digital OscilloscopeDigital Oscilloscope
Breadboard - ClassicBreadboard - Classic
Graphite Pencil SetGraphite Pencil Set
3

Margins, encirclements, and four ways to ask the question

Loading Jupyter Notebook...

Outils nécessaires :

Desktop ComputerDesktop Computer
4

Compendium: conditional stability, and why the curve is a circle

The count is of encirclements, not of crossings, and the distinction matters because a loop can be stable with high gain and UNSTABLE with low gain. Wind the volume down on such a system and it starts oscillating - which is exactly backwards from everybody's intuition, and it is why the criterion is stated as a winding number rather than as a rule about crossing the negative axis. Conditionally stable loops are common wherever a designer has shaped the response to get more feedback than the plain rule allows, and they are dangerous for a reason that has nothing to do with mathematics: the gain is low during start-up, during a fault, and while an operator is turning the knob. The full statement counts open-loop unstable poles too. Nyquist's theorem says the closed loop is stable when the number of clockwise encirclements of minus one equals minus the number of poles the open loop already has in the right half plane, which is why the criterion works on systems that are unstable to begin with - a rocket balancing on its thrust, an inverted pendulum, a modern aircraft deliberately built unstable for manoeuvrability. For everything in this batch that number is zero and the rule reduces to the simple form: no encirclements, no singing.

Outils nécessaires :

Notebook and PencilNotebook and Pencil

Matériaux

2

Outils requis

10

CC0 Domaine public

Ce blueprint est publié sous CC0. Vous êtes libre de copier, modifier, distribuer et utiliser ce travail pour tout usage, sans demander la permission.

Soutenez le Maker en achetant des produits via son Blueprint où il perçoit une Commission Maker définie par les Vendeurs, ou créez une nouvelle itération de ce Blueprint et incluez-le comme connexion dans votre propre Blueprint pour partager les revenus.

Commentaires

(0)

Se connecter pour participer à la discussion

Chargement des commentaires...