Explicit derivations and a documented, DESC-implemented algorithm for optimizing a surface current on a toroidal surface and cutting it into modular or helical stellarator coils.
Single-Stage Stellarator Optimization: Combining Coils with Fixed Boundary Equilibria
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
We introduce a novel approach for the simultaneous optimization of plasma physics and coil engineering objectives using fixed-boundary equilibria that is computationally efficient and applicable to a broad range of vacuum and finite plasma pressure scenarios. Our approach treats the plasma boundary and coil shapes as independently optimized variables, penalizing the mismatch between the two using a quadratic flux term in the objective function. Four use cases are presented to demonstrate the effectiveness of the approach, including simple and complex stellarator geometries. As shown here, this method outperforms previous 2-stage approaches, achieving smaller plasma objective function values when coils are taken into account.
fields
physics.plasm-ph 1years
2025 1verdicts
CONDITIONAL 1representative citing papers
citing papers explorer
-
Surface Current Optimization and Coil-Cutting Algorithms for Stage-Two Stellarator Optimization
Explicit derivations and a documented, DESC-implemented algorithm for optimizing a surface current on a toroidal surface and cutting it into modular or helical stellarator coils.