2019KTH Publication Database DiVA (KTH Royal Institute of Technology)Open access

Paddle stirrer to a reverberation chamber

Andrea Mastrorilli, Josefin Holmgren

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Abstract

Halmstad University is currently equipped with an Echo-free chamber to perform EMC testing, but no reverberation chamber. The construction of a paddle stirrer to be utilized in Halmstad University would drastically reduce the time required to perform EMC testing, since reverberation chambers are more efficient than Echo-free chambers for these kind of tests. The goal of this project was to design and develop a paddle stirrer structure and a control system able to rotate the stirrer to specific repeatable absolute angles with an accuracy of a tenth of a degree,holding a mass up to 70kg and rotating a mass up to 20 kg distributed on a 1x1m surface. To achieve this goal the system has been designed using a metal base structure, bearings to hold the lower shaft in its axes reducing its friction, a stepper motor connected to the gears to increase its holding torque, a magnetic rotary encoder and a control system with a double feedback from interrupts and from the encoder to improve the accuracy and reliability of the system. The resultis a completely working prototype, which fulfils all the requirements except for the speed. The target speed has not been achieved due to the insufficient holding torque of the available stepper motor.

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What this paper is about

Halmstad University is currently equipped with an Echo-free chamber to perform EMC testing, but no reverberation chamber. The construction of a paddle stirrer to be utilized in Halmstad University would drastically reduce the time required to perform EMC testing, since reverberation chambers are more efficient than Echo-free chambers for these kind of tests. The goal of this project was to design and develop a paddle stirrer structure and a control system able to rotate the stirrer to specific repeatable absolute angles with an accuracy of a tenth of a degree,holding a mass up to 70kg and rotating a mass up to 20 kg distributed on a 1x1m surface. To achieve this goal the system has been designed using a metal base structure, bearings to hold the lower shaft in its axes reducing its friction, a stepper motor connected to the gears to increase its holding torque, a magnetic rotary encoder and a control system with a double feedback from interrupts and from the encoder to improve the accuracy and reliability of the system. The resultis a completely working prototype, which fulfils all the requirements except for the speed. The target speed has not been achieved due to the insufficient holding torque of the available stepper motor.

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Available abstract

Halmstad University is currently equipped with an Echo-free chamber to perform EMC testing, but no reverberation chamber. The construction of a paddle stirrer to be utilized in Halmstad University would drastically reduce the time required to perform EMC testing, since reverberation chambers are more efficient than Echo-free chambers for these kind of tests. The goal of this project was to design and develop a paddle stirrer structure and a control system able to rotate the stirrer to specific repeatable absolute angles with an accuracy of a tenth of a degree,holding a mass up to 70kg and rotating a mass up to 20 kg distributed on a 1x1m surface. To achieve this goal the system has been designed using a metal base structure, bearings to hold the lower shaft in its axes reducing its friction, a stepper motor connected to the gears to increase its holding torque, a magnetic rotary encoder and a control system with a double feedback from interrupts and from the encoder to improve the accuracy and reliability of the system. The resultis a completely working prototype, which fulfils all the requirements except for the speed. The target speed has not been achieved due to the insufficient holding torque of the available stepper motor.

Key concepts: Electromagnetic reverberation chamber, Paddle, Acoustics, Echo (communications protocol), Engineering, Reverberation, Mechanical engineering, Physics

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