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PAMPA [1] is a lightweight broadcast algorithm that purposely avoids randomisation by combining two known strategies to the problem of ad-hoc broadcast: counting messages, and measuring received signal strength.
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One other small thing: it appears to only count messages that are deemed "important" if you're using Priority Inbox.
Regarding communication cost, which is directly related with the battery life of the wireless devices, we provide a simplifiedf analysis by counting elementary messages, where one elementary message is defined as a scalar value (e.g., one coordinate of one particle).
Counting duplicate messages improves efficiency and is therefore a trait found in many WSN broadcast protocols including PAMPA.
Hence, it can estimate the amount of vehicles or queue length by counting incoming messages and then determine the cycle length of the signal.
Indeed, I've not received any likes or messages at all (I'm not counting the message from the app admin who noticed I was a journalist and wanted to see if he could encourage me to write about the app); and just four visits in total to my profile.
To measure the communication cost, we count elementary messages, where one elementary message is defined as simple scalar data.
I counted 11 messages dispatched in the hour and a half.
I counted 11 messages despatched in the hour and a half.
The system counts the messages suggesting danger and those suggesting safety and "synthesises it into an easy-to-read interface".
But I could pretty much count those messages and comments on one hand, while the positive response has been infinitely more plentiful and more meaningful.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com