Problem definition
Canonical benchmark implementation
Canonical RHS excerpt from the registered callable used for this benchmark cell. Expand it to verify the state equations; it is not a standalone runnable fixture.
Show canonical RHS excerpt
def _kuramoto_rhs(t, theta, omega, K, N):
dtheta = omega.copy()
for i in range(N):
coupling = np.sum(np.sin(theta - theta[i]))
dtheta[i] += (K / N) * coupling
return dtheta
def rhs(t, y):
return _kuramoto_rhs(t, y, _K5_OMEGA, 2.0, 5)- Parameters
- _K5_OMEGA = [1, 1.1, 0.9, 1.05, 0.95]
- Initial condition
- y(0) = [0, 0.5, 1, 1.5, 2]
- Horizon
- t ∈ [0, 20]
Canonical RHS excerpt captured from the same registered callable used for the published benchmark. Frozen closure values are summarized below; helper imports and solver settings are intentionally omitted.
Cite this page
Replace the access date. Pin the freeze ID and library versions when comparing against a later export. Cite it as what it is — a self-reported vendor benchmark, not an independently verified result. The note field says so; please keep it.
@misc{resonix_evidence_kuramoto_oscillators_n_5_2026,
title = {Resonix Evidence Portal: Kuramoto oscillators (N=5)},
author = {{Resonix Labs (Canada) Inc.}},
year = {2026},
howpublished = {\url{https://resonix.tech/evidence/problems/kuramoto-oscillators-n-5}},
note = {Self-reported vendor benchmark; internally generated by Resonix Labs and not independently verified. Accessed YYYY-MM-DD. Freeze 2026-08-13; libsolvsrk 2.3.0; SciPy 1.14.}
}TRL 4–5 · simulation-lab validated · 398 problems · 14 solver arms · clean + 5 noise levels
Freeze: 2026-08-13 · scipy 1.14 · libsolvsrk 2.3.0 · Methodology
Self-reported by Resonix Labs · not independently verified · Verification status