Difference between revisions of "The inventors of bluetooth say there could be problems using their tech for coronavirus contact tracing (Q4611)"
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(Created claim: quote (P203): In other words, Bluetooth’s inaccuracy may not be a problem for typical applications (connecting to that friend’s speaker, for example), but certainly could be for purposes of determining exposure to a pathogen.) |
(Created claim: quote (P203): In addition to RSSI uncertainty, you will have the path loss variation. If there is an obstacle, like a human body, between your BLE device and the detected one, there may be some 70dB of attenuation of the signal at 1m (3ft; e.g. in a crowd) but in free space this may well correspond to 10m (30ft)) |
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+ | In addition to RSSI uncertainty, you will have the path loss variation. If there is an obstacle, like a human body, between your BLE device and the detected one, there may be some 70dB of attenuation of the signal at 1m (3ft; e.g. in a crowd) but in free space this may well correspond to 10m (30ft) | ||
Property / quote: In addition to RSSI uncertainty, you will have the path loss variation. If there is an obstacle, like a human body, between your BLE device and the detected one, there may be some 70dB of attenuation of the signal at 1m (3ft; e.g. in a crowd) but in free space this may well correspond to 10m (30ft) / rank | |||
+ | Normal rank |
Revision as of 21:58, 14 May 2020
paper published in May 2020
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English |
The inventors of bluetooth say there could be problems using their tech for coronavirus contact tracing
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paper published in May 2020
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Statements
5 May 2020
0 references
In other words, Bluetooth’s inaccuracy may not be a problem for typical applications (connecting to that friend’s speaker, for example), but certainly could be for purposes of determining exposure to a pathogen.
0 references
In addition to RSSI uncertainty, you will have the path loss variation. If there is an obstacle, like a human body, between your BLE device and the detected one, there may be some 70dB of attenuation of the signal at 1m (3ft; e.g. in a crowd) but in free space this may well correspond to 10m (30ft)
0 references