
Background
In a data center, the electrical energy supplied is almost completely
converted into heat and released into the environment. Currently, in
most cases this waste heat source is not utilized. In order to gain a
better understanding of the quantity and quality of the waste heat
generated, a test bench for servers was set up at the IER. A central
component of the method is a fully automated and remotely
controlled test bench with different sensors. Benchmarks are used to
specifically load the server components.
Scope of the thesis
In previous work, a server test bench was constructed, set up and
optimized. In addition, the individual components of the
measurement setup and concept were put into operation and tested.
All subsystems are fully automated and can be controlled remotely
using Python. In the course of this work, a validation of the
developed method will be carried out on another server and
processor. This is to check the extent to which the results already
obtained are transferable. For this purpose, the previous automation
and measurement approach must be adapted to the new server and
CPU.
For this purpose, the following questions are to be addressed:
Can the test results also be reproduced on another server?
What influence does a variation in the cooling strategy have on the quantity and quality of waste heat?
Analyzing and processing the measurement data to create a waste heat model.
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