Producing stationary non-inductive discharges is one of the first objectivesof Tore Supra. On this tokamak these discharges of various types have alreadybeen achieved in a reproducible manner with fast wave electron heating (FWEH)and lower hybrid current drive (LHCD) applied separately. In the firstscenario, 50% of bootstrap current was reached with 5 MW of FWEH power. In thesecond case, the current was generated by 3 MW of LH power for almost twominutes. The non-inductive current density profile is determined for thesescenarios, with an experimental method relying on time sequence equilibria andon the prediction of the parallel conductivity. With this method, bootstrapcurrent predictions are validated. It is then possible to determine thecontribution of the different types of non-inductive currents for improvedconfinement regimes with radio frequency and current drive heating.