FAR-FIELD WIRELESS CHARGING OF MEDICAL DEVICES
Techniques are described for wirelessly charging a wearable or implantable medical device. In some embodiments, the techniques may involve determining a relative proximity of a medical device to a body of a patient. The techniques may further involve determining a power-transfer efficiency based on the relative proximity of the medical device to the body of the patient. The techniques may further involve tuning a receiving antenna of the medical device based on the determined power-transfer efficiency.
1 . A method comprising:
determining a relative proximity of a medical device to a body of a patient;
determining a power-transfer efficiency based on the relative proximity of the medical device to the body of the patient; and
tuning a receiving antenna of the medical device based on the determined power-transfer efficiency.
2 . The method of claim 1 , wherein determining the power-transfer efficiency based on the relative proximity comprises:
determining the proximity of the medical device to the body of the patient is within a predetermined threshold; and
responsive to determining the proximity of the medical device to the body of the patient is within the predetermined threshold, reducing the power-transfer efficiency relative to a baseline power-transfer efficiency.
3 . The method of claim 2 , wherein reducing the power-transfer efficiency maintains a temperature of the medical device to within a predetermined range.
4 . The method of claim 2 , wherein tuning the receiving antenna comprises causing the resonance frequency of the receiving antenna to be modified to a characteristic frequency that is different from a broadcast frequency of a transmitting antenna.
5 . The method of claim 1 , wherein determining the power-transfer efficiency based on the relative proximity comprises:
determining the proximity of the medical device to the body of the patient exceeds a predetermined threshold; and
responsive to determining the proximity of the medical device to the body of the patient exceeds the predetermined threshold, increasing the power-transfer efficiency relative to a baseline power-transfer efficiency.
6 . The method of claim 1 , wherein determining the relative proximity of the medical device to the body of the patient comprises determining whether the medical device is attached to the body of the patient or is being worn by the patient.
7 . The method of claim 1 , wherein the power-transfer efficiency is further based on a current battery capacity of a battery of the medical device.
8 . The method of claim 7 , wherein determining the power-transfer efficiency comprises increasing the power-transfer efficiency relative to a baseline power-transfer efficiency responsive to determining the current battery capacity is below a minimum threshold.
9 . The method of claim 7 , wherein determining the power-transfer efficiency comprises reducing the power-transfer efficiency relative to a baseline power-transfer efficiency responsive to determining the current battery capacity is at or above a maximum threshold.
10 . A system comprising:
one or more processors; and
one or more processor-readable media storing instructions which, when executed by the
one or more processors, cause performance of:
determining a relative proximity of a medical device to a body of a patient;
determining a power-transfer efficiency based on the relative proximity of the medical device to the body of the patient; and
tuning a receiving antenna of the medical device based on the determined power-transfer efficiency.
11 . The system of claim 10 , wherein determining the power-transfer efficiency based on the relative proximity comprises:
determining the proximity of the medical device to the body of the patient is within a predetermined threshold; and
responsive to determining the proximity of the medical device to the body of the patient is within the predetermined threshold, reducing the power-transfer efficiency relative to a baseline power-transfer efficiency.
12 . The system of claim 11 , wherein reducing the power-transfer efficiency level maintains a temperature of the medical device to within a predetermined range.
13 . The system of claim 11 , wherein tuning the receiving antenna comprises causing the resonance frequency of the receiving antenna to be modified to a characteristic frequency that is different from a broadcast frequency of a transmitting antenna.
14 . The system of claim 10 , wherein determining the power-transfer efficiency based on the relative proximity comprises:
determining the proximity of the medical device to the body of the patient exceeds a predetermined threshold; and
responsive to determining the proximity of the medical device to the body of the patient exceeds the predetermined threshold, increasing the power-transfer efficiency relative to a baseline power-transfer efficiency.
15 . The system of claim 10 , wherein determining the relative proximity of the medical device to the body of the patient comprises determining whether the medical device is attached to the body of the patient or is being worn by the patient.
16 . The system of claim 10 , wherein the power-transfer efficiency is further based on a current battery capacity of a battery of the medical device.
17 . The system of claim 16 , wherein determining the power-transfer efficiency comprises increasing the power-transfer efficiency relative to a baseline power-transfer efficiency responsive to determining the current battery capacity is below a minimum threshold.
18 . The system of claim 16 , wherein determining the power-transfer efficiency comprises reducing the power-transfer efficiency relative to a baseline power-transfer efficiency responsive to determining the current battery capacity is at or above a maximum threshold.
19 . A method comprising:
determining a relative proximity of a medical device to a body of a patient;
determining a power-transfer efficiency based on the relative proximity of the medical device to the body of the patient; and
tuning a receiving antenna of the medical device based on the determined power-transfer efficiency by changing a characteristic frequency of the receiving antenna.
20 . The method of claim 19 . wherein determining the power-transfer efficiency comprises reducing the power-transfer efficiency relative to a baseline power-transfer efficiency to maintain a temperature of the medical device to within a predetermined range.