Design and realization of an electromagnetic guiding system for blind running athletes

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Abstract

Nowadays the technologies aimed at improving the quality of life of people affected by visual diseases are quite common; e.g., devices to support walking or reading. Surprisingly, there is a lack of innovative technologies aimed at helping visually impaired athletes during physical activities. An example is represented by blind runners who need to be physically linked to a sighted guide by means of non-stretchable tethers during races; with consequent limitations in terms of performance and independence. This paper wants to investigate the possibility of realizing a system able to guide blind runners along a complex path, paving the way for the realization of an innovative device designed to improve their independence during training or competitions. The system consists of: (1) a mobile unit, which is placed before the runner and generates two “electromagnetic walls” delimiting the way; (2) a receiving unit (worn by the athlete) that provides vibro-tactile warnings every time the user is going outside the safe area so as to encourage him to move toward the central position. The feasibility and the utility of the system proposed are demonstrated by means of tests carried out thanks to the collaboration of a blind volunteer.

Figures

  • Figure 1. Schematic representation of the guiding system: two transmitting antennas, set on a mobile unit, generate two EM walls delimiting a virtual hallway that can guide the running athlete, properly equipped with the receiving system, along whatever paths.
  • Figure 2. Schematic representation of the whole system, divided in two subunits: one transmitting unit moving in front of the user, and one receiving unit worn by the user and including two vibrational warnings.
  • Figure 3. Main geometrical parameters of the transmitting antenna.
  • Table 1. Dimensions (mm) of Geometrical Parameters of the Transmitting Antenna.
  • Figure 4. Amplitude (Top) and phase (Bottom) of the E field radiated by each slots obtained with the optimized parameters.
  • Figure 5. Screen shot of the antenna model showing the three screws.
  • Figure 6. Picture of one of the transmitting slot antenna realized.
  • Figure 7. Reflection coefficient of the transmitting antenna: a comparison between calculated and measured values.

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CITATION STYLE

APA

Pieralisi, M., Petrini, V., Di Mattia, V., Manfredi, G., De Leo, A., Scalise, L., … Cerri, G. (2015). Design and realization of an electromagnetic guiding system for blind running athletes. Sensors (Switzerland), 15(7), 16466–16483. https://doi.org/10.3390/s150716466

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