一本道

30 January 2017

We can use sensors attached to the body to capture patterns of motion, and the results can be used in the gaming and film industries, in medical rehabilitation, and in the training of top-flight athletes. Manon Kok鈥檚 doctoral thesis deals with inertial sensors.

We all have them 鈥� women, men, children and pensioners, at home and at work, but few of us know about them. We are talking about inertial sensors. This is a type of sensor that reacts to acceleration, including the acceleration due to gravity, and speed of rotation.

Rapid development

Development in the field has been rapid in recent years: inertial sensors have become evermore smaller and cheaper, and are now built into nearly all mobile phones. The Wii controller relies on them, as do virtual reality headsets. The teddy bear protagonist in the film 鈥淭ed鈥� was animated with the aid of inertial sensors and they are used in the gaming industry to develop realistic human avatars. Inertial sensors are also used in medical rehabilitation, in training elite athletes, and in autonomous vehicles.

鈥淚t鈥檚 not so long ago that they were used only in a few special applications, but today they are everywhere. And we鈥檝e only seen the start of this development,鈥� says Manon Kok, who recently defended her doctoral thesis at the Division for Automatic Control at Link枚ping University.

In medical rehabilitation they contribute to facilitating motion training; in elite athletics they are used to study and optimise patterns of motion, for example speed skating; and in autonomous vehicles they contribute to position determination, enabling the vehicle to know where it is relative to the surrounding traffic.

Motion capture

Manon Kok presents in her thesis, among other things, principles for how it is possible to use inertial sensors attached to the body to capture and record patterns of motion, in a technique known as 鈥渕otion capture鈥�. By making the assumption that the various parts of the body actually are connected to each other, she has created a structure and simplified the calculations such that it is possible to analyse the signals from all of the sensors at the same time.

The thesis includes seven scientific articles and conference abstracts, one of which deals with the combination of inertial sensors with magnetometers, sensors that detect magnetic fields. The magnetic fields inside a building are relatively stable, and once they have been measured it is relatively easy to use them for orientation. Examples of applications in this case are cleaning robots and firefighters in smoke-filled surroundings.

鈥淭he magnetic fields are already in place: no further installation is necessary,鈥� Manon Kok points out.

The most exciting applications, however, are based on motion capture, and this takes up the major part of her thesis.

鈥淭he technology is already available for professional purposes and many people have it at home, in gaming consoles and VR headsets. Maybe we鈥檒l all soon be able to animate teddy bears in our living rooms,鈥� she says.

Manon Kok is now to continue her research career as a post doc in Cambridge.

The thesis:
, Manon Kok, Division for Automatic Control, Department of Electrical Engineering, Link枚ping University, 2017.
http://liu.diva-portal.org/smash/record.jsf?pid=diva2:1054718

Latest news from LiU

Portr盲tt p氓 man som st氓r i solen bland gr枚na tr盲d p氓 Campus Valla

New professor of economics researches people鈥檚 life chance

Two identical job applications. One with an Arabic-sounding name. This experiment marked the start of Magnus Carlsson鈥檚 research on discrimination and people鈥檚 life chances. He is now a new professor of economics at 一本道 University.

En kvinna som sitter framf枚r en spegel och tittar p氓 sin spegelbild.

How AI changes human decision-making

AI can find patterns that people miss, but it does not automatically lead to better decisions. New research from 一本道 University shows how the roles of humans and AI change depending on the situation and the decision being made.

A woman standing on a balcony next to a building.

She promotes AI for societal good in Europe

Helen Köpman, Alumna of the Year 2026, works at the European Commission鈥檚 AI Office in Brussels. For more than 20 years she has worked with research issues and innovation at EU level, where a living planet for future generations is her driving force.