For automated functional testing of mechatronic products a lot of different test tools are available. Typically, they focus on unique specific tasks and have different user interfaces, syntax and semantics. The outcome of this is a diversity of the applied tools, what leads to negative impacts for the user acceptance, costs and thus for the efficiency of automated testing. The presented dissertation dissolves this problem with a new architecture and methodology for the realization of test system for functional testing of mechatronic products. The methodology supports the integration of already existing tools into flexible test systems with a uniformly user interface. Thus acceptance and efficiency is being enhanced.
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For automated functional testing of mechatronic products a lot of different test tools are available. Typically, they focus on unique specific tasks and have different user interfaces, syntax and semantics. The outcome of this is a diversity of the applied tools, what leads to negative impacts for the user acceptance, costs and thus for the efficiency of automated testing. The presented dissertation dissolves this problem with a new architecture and methodology for the realization of test system...
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