Abstract

An extensive numerical simulation of the Ignitor-Ult plasma dynamics has been carried out using both the free boundary equilibrium code TEQ and the transport and MHD free boundary code TSC. The stability behavior of the plasma - vacuum vessel - poloidal field coils - passive plate system has been analyzed for different machine and plasma configurations. The response of several feedback systems has been studied taking into account the real characteristics of the power supply. The converter and its controller behavior has been extensively studied by means of the simulation program CSMP that uses a lumped parameter model of the system. The results show a good stability behavior over a wide operating range.

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