IP Library Granted Patent US 12,294,401
Granted Patent B2
US 12,294,401 · App. 17/923,370 · Granted May 6, 2025

Underwater wearable device, communication system comprising the same and communication method

Inventors: Koen Cornelis Hubertus Blom (The Hague, NL); Paul Louis Maria Joseph Van Neer (Bergschenhoek, NL); Mark Kevan Prior (The Hague, NL); Henry Simon Dol (Capelle aan den IJssel, NL); Jan-Laurens Pieter Jacobus Van Der Steen (Eindhoven, NL)
Assignee: Nederlandse Organisatie voor toegepast-natuurwetenschappelijk onderzoek TNO
H04B1/385H04B13/02
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Quick Facts
Patent No.
US 12,294,401
App. No.
17/923,370
Granted
May 6, 2025
Kind
B2
Abstract

A communication system ( 1 ) comprising a first and a second underwater wearable device to be worn by a swimmer at mutually distant locations is disclosed herein. The communication system is configured to derive information pertaining to the swimmer from properties of a version of the acoustic signal transmitted from a first communication module of the first underwater wearable device to a second communication module of the second underwater wearable device.

Claims (63)

1. A communication system comprising:

a first underwater wearable device provided with a first communication module that comprises:

a signal source configured to provide an input signal to be transmitted; and

an acoustic transmitter configured to convert the input signal into an acoustic signal suitable for transmission in water and to transmit the acoustic signal; and

a second underwater wearable device provided with a second communication module that comprises:

an acoustic receiver configured to receive a transmitted version of the acoustic signal and to convert the received transmitted version of the acoustic signal into a processable signal; and

a signal processor configured to process the processable signal;

wherein the first underwater wearable device with the first communication module and the second underwater wearable device with the second communication module are configured to be worn at mutually distant locations of a swimmer,

wherein the communication system is configured to derive information pertaining to the swimmer from properties of the received transmitted version of the acoustic signal, and

wherein the properties are due to behavior of the acoustic signal in water,

wherein the mutually distant locations at which the underwater wearable device with the first communication module and the underwater wearable device with the second communication module are configured to be worn by the swimmer are axially different,

wherein the signal processor of the second communication module is configured to determine a delay with which the received transmitted version of the acoustic signal is received by the second communication module from the first communication module,

wherein the second communication module is configured to transmit an acoustic signal with an indication of the delay to the first communication module,

wherein the first communication module comprises a signal processor configured to determine a further delay with which a received transmitted version of the acoustic signal from the second communication module is received, and

wherein the signal processor of the first communication module is configured to provide an estimate, as the information pertaining to the swimmer, of a relative velocity of the swimmer relative to the water from the difference between the delay and the further delay.

2. A communication system comprising:

a first underwater wearable device provided with a first communication module that comprises:

a signal source configured to provide an input signal to be transmitted; and

an acoustic transmitter configured to convert the input signal into an acoustic signal suitable for transmission in water and to transmit the acoustic signal; and

a second underwater wearable device provided with a second communication module that comprises:

an acoustic receiver configured to receive a transmitted version of the acoustic signal and to convert the received transmitted version of the acoustic signal into a processable signal; and

a signal processor configured to process the processable signal;

wherein the first underwater wearable device with the first communication module and the second underwater wearable device with the second communication module are configured to be worn at mutually distant locations of a swimmer,

wherein the communication system is configured to derive information pertaining to the swimmer from properties of the received transmitted version of the acoustic signal,

wherein the properties are due to behavior of the acoustic signal in water,

wherein the second communication module is configured to split the processable signal into a first signal component and a second signal component,

wherein the first signal component is associated with a component of the received transmitted version of the acoustic signal that is directly transmitted to the second communication module,

wherein the second signal component is associated with a component of the received transmitted version of the acoustic signal that is transmitted to the second communication module via a reflection, and

wherein the signal processor of the first communication module is configured to determine a difference in a time of arrival of the first signal component and the second signal component and to estimate as the information a depth of the swimmer from the difference.

3. A communication system comprising:

a first underwater wearable device provided with a first communication module that comprises:

a signal source configured to provide an input signal to be transmitted; and

an acoustic transmitter configured to convert the input signal into an acoustic signal suitable for transmission in water and to transmit the acoustic signal; and

a second underwater wearable device provided with a second communication module that comprises:

an acoustic receiver configured to receive a transmitted version of the acoustic signal and to convert the received transmitted version of the acoustic signal into a processable signal; and

a signal processor configured to process the processable signal;

wherein the first underwater wearable device with the first communication module and the second underwater wearable device with the second communication module are configured to be worn at mutually distant locations of a swimmer,

wherein the communication system is configured to derive information pertaining to the swimmer from properties of the received transmitted version of the acoustic signal,

wherein the properties are due to behavior of the acoustic signal in water,

wherein at least one of the first and second underwater wearable devices is configured to be worn at a wrist of a swimmer, and

wherein the communication module of at least an other one of the first and second underwater wearable devices is configured to:

determine a Doppler spread in the received transmitted version of the acoustic signal received from the communication module of the one of the first and second underwater wearable devices, and

determine, as the information pertaining to the swimmer, a type of stroke used by the swimmer from the determined Doppler spread.

4. The communication system according to claim 1 , further configured to provide a distance between the first communication module and the second communication module and a controller for accordingly controlling a frequency range used for acoustic transmission to optimize path loss versus delay spread.

5. The communication system according to claim 1 , comprising a further communication module that is provided in a housing configured to be positioned or mounted at a predetermined location.

6. An underwater wearable device provided with a communication module comprising:

a signal source configured to provide an input signal to be transmitted;

an acoustic transmitter configured to convert the input signal into an acoustic signal suitable for transmission in water and to transmit the acoustic signal;

an acoustic receiver configured to receive a transmitted version of an acoustic signal transmitted to the communication module of the underwater wearable device by a communication module of another species of the underwater wearable device worn by the swimmer at distance from the underwater wearable device and to convert the received transmitted version of the acoustic signal into a processable signal;

a signal processor configured to process the processable signal by:

deriving information pertaining to a swimmer wearing the underwater wearable device from the received transmitted version of the acoustic signal,

wherein the deriving information pertaining to the swimmer is performed based on properties of the received transmitted version of the acoustic signal that are due to the behavior of the acoustic signal in water, wherein the acoustic transmitter is configured to selectively assume one of at least a coherent transmission mode and a non-coherent transmission mode, and

wherein the acoustic transmitter is configured to select a transmission mode dependent on a detected type of swimming stroke of the swimmer.

7. The underwater wearable device according to claim 6 , wherein the acoustic transmitter comprises a plurality of acoustic transmission elements arranged at mutually different positions on an outer surface of the underwater wearable device.

8. The underwater wearable device according to claim 6 , further comprising one or more sensors that are communicatively coupled to the signal source, to enable acoustic transmission of sensor signals.

9. The communication system according to claim 2 , further configured to provide a distance between the first communication module and the second communication module and a controller for accordingly controlling a frequency range used for acoustic transmission to optimize path loss versus delay spread.

10. The communication system according to claim 3 , further configured to provide a distance between the first communication module and the second communication module and a controller for accordingly controlling a frequency range used for acoustic transmission to optimize path loss versus delay spread.

11. The communication system according to claim 5 , further configured to provide a distance between the first communication module and the second communication module and a controller for accordingly controlling a frequency range used for acoustic transmission to optimize path loss versus delay spread.

12. The communication system according to claim 1 , further comprising one or more sensors that are communicatively coupled to the signal source, to enable acoustic transmission of sensor signals.

13. The communication system according to claim 2 , further comprising one or more sensors that are communicatively coupled to the signal source, to enable acoustic transmission of sensor signals.

14. The communication system according to claim 3 , further comprising one or more sensors that are communicatively coupled to the signal source, to enable acoustic transmission of sensor signals.

15. The communication system according to claim 2 , comprising a further communication module that is provided in a housing configured to be positioned or mounted at a predetermined location.

16. The communication system according to claim 3 , comprising a further communication module that is provided in a housing configured to be positioned or mounted at a predetermined location.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 24, 2023
From: BLOM, KOEN CORNELIS HUBERTUS; VAN NEER, PAUL LOUIS MARIA JOSEPH; PRIOR, MARK KEVAN; DOL, HENRY SIMON; VAN DER STEEN, JAN-LAURENS PIETER JACOBUS
To: NEDERLANDSE ORGANISATIE VOOR TOEGEPAST-NATUURWETENSCHAPPELIJK ONDERZOEK TNO
Reel/Frame 063164/0649 →
Priority Claims (1)
EP 20175241 · May 18, 2020 · regional
Continuity (1)
Related Publication 20230208465A1 · Jun 29, 2023
References Cited (7)
US 9668041B2 · Vavrus · 2017 [cited by examiner]
US 10227116B2 · Lindman · 2019 [cited by applicant]
US 20090279389A1 · Irie · 2009 [cited by examiner]
US 20140348367A1 · Vavrus et al. · 2014 [cited by applicant]
US 20160259029A1 · Jukkala · 2016 [cited by examiner]
US 20170183068A1 · Lindman · 2017 [cited by examiner]
European Patent Office, International Search Report in corresponding International Application No. PCT/NL2021/050317, dated Jul. 23, 2021 (3 pages). [cited by applicant]