IP Library Granted Patent US 12665526
Granted Patent B2
US 12665526 · App. 18/166,224 · Granted Jun 23, 2026

Wired vibration energy transfer system and method

Inventors: Taehwa Lee (Ann Arbor, MI); Xiaopeng Li (Ann Arbor, MI); Ziqi Yu (Ann Arbor, MI); Yukihiro Tadokoro (Ann Arbor, MI); Danil Prokhorov (Canton, MI)
Assignees: TOYOTA MOTOR ENGINEERING & MANUFACTURING NORTH AMERICA, INC.; TOYOTA JIDOSHA KABUSHIKI KAISHA
H02N2/186H02K7/1807H02N2/181
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Quick Facts
Patent No.
US 12665526
App. No.
18/166,224
Granted
Jun 23, 2026
Kind
B2
Abstract

An energy harvesting system capable of using vibrational or mechanical energy to direct energy along a line to an energy receiver to transfer the vibrational energy. The energy harvesting system includes an energy transmitter capable of turning rotational or vibrational energy into a linear vibration that travels along the line to an energy receiver that takes the vibrational energy stored in the transverse wave and turns it into rotational motion. The rotational motion can then be used to drive an electric generator. A tension control unit provides tension to the line ensuring the amplitude of the transverse wave is at a maxima when it reaches the energy receiver.

Claims (49)

1 . An energy harvesting system comprising:

an energy transmitter to produce a vibration that travels in a transverse wave along a line;

an energy receiver to receive vibrational energy stored in the transverse wave; and

a tension control unit coupled to the energy transmitter, the tension control unit providing tension to the line such that an amplitude of the transverse wave is at a maxima when the transverse wave reaches the energy receiver.

2 . The energy harvesting system of claim 1 , wherein the energy transmitter is to convert rotational energy into the vibration that travels along the line.

3 . The energy harvesting system of claim 1 , wherein the energy transmitter is a vibrational source moving in a linear direction.

4 . The energy harvesting system of claim 1 , wherein the energy receiver is to convert the vibrational energy stored in the transverse wave into rotational energy.

5 . The energy harvesting system of claim 4 , further comprising:

an electric generator to convert the rotational energy into electricity.

6 . The energy harvesting system of claim 2 , further comprising:

a first converter provided between the energy transmitter and the line, the first converter configured to convert the rotational energy into the vibration.

7 . The energy harvesting system of claim 6 , further comprising:

a second converter provided between the line and the energy receiver, the second converter configured to convert the vibrational energy into the rotational energy.

8 . The energy harvesting system of claim 1 , wherein the tension control unit comprises:

a sensor to sense a frequency of oscillations of the line; and

a microcontroller coupled to the sensor and a motorized pulley, wherein the microcontroller determines the frequency of the oscillations of the line and controls an amount of force to either increase a length of the line or decrease the length of the line in the motorized pulley.

9 . The energy harvesting system of claim 1 , wherein the line comprises a rope.

10 . The energy harvesting system of claim 1 , wherein the energy receiver further comprises:

a magnet driven by the vibrational energy through a magnetic coil to produce electricity.

11 . An energy harvesting system comprising:

an energy transmitter to turn rotational energy into a vibration that travels along a line;

a line attached to the energy transmitter where the energy transmitter creates a transverse wave that travels along the line;

an energy receiver to receive vibrational energy stored in the transverse wave and turn it into rotation;

an electric generator that turns rotational energy into electricity; and

a tension control unit coupled to the energy transmitter, the tension control unit providing tension to the line such that an amplitude of the transverse wave is at a maxima when the transverse wave reaches the energy receiver.

12 . The energy harvesting system of claim 11 , further comprising:

a first converter provided between the energy transmitter and the line, the first converter configured to convert the rotational energy into the vibration; and

a second converter located between the line and the energy receiver, the second converter configured to convert the vibrational energy into rotational energy.

13 . The energy harvesting system of claim 11 , wherein the tension control unit comprises:

a sensor to sense a frequency of oscillations of the line; and

a microcontroller coupled to the sensor and a motorized pulley, wherein the microcontroller determines the frequency of the oscillations of the line and controls an amount of force to either increase a length of the line or decrease the length of the line in the motorized pulley.

14 . The energy harvesting system of claim 11 , wherein the line comprises a rope.

15 . An energy harvesting method, comprising:

transmitting a vibration that travels in a transverse wave along a line;

receiving vibrational energy stored in the transverse wave; and

applying tension to the line such that an amplitude of the transverse wave is at a maxima when the transverse wave reaches an energy receiver.

16 . The energy harvesting method of claim 15 , further comprising:

converting rotational energy into the vibration that travels along the line.

17 . The energy harvesting method of claim 15 , further comprising:

creating the vibration from a vibrational source moving in a linear direction.

18 . The energy harvesting method of claim 15 , further comprising:

varying the tension in the line so that as a frequency of the vibration changes, a location of an amplitude maxima of the transverse wave is substantially constant.

19 . The energy harvesting method of claim 15 , further comprising:

converting the vibrational energy into rotational energy; and

converting the rotational energy into electricity.

20 . The energy harvesting method of claim 16 , further comprising:

sensing using a sensor a frequency of oscillations of the line;

determining frequency of the oscillations of the line using a microcontroller coupled to the sensor; and

controlling an amount of force to either increase a length of the line or decrease the length of the line using a motorized pulley.