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EEOTS algorithm In this paper We merge two unconnected concepts
(i) Channel coding can be used to conserve energy by transmitting at reduced power levels over longer durations.
(ii) Electro-chemical mechanisms in batteries allow them to recover energy during idle periods.
Two kinds of delay constraints were considered, one a deadline constraint and the other an average delay constraint.
We achieve an Energy Efficient transmission compared to an other algorithms.
-EEOTS algorithm In this paper We merge two unconnected concepts
(i) Channel coding can be used to conserve energy by transmitting at reduced power levels over longer durations.
(ii) Electro-chemical mechanisms in batteries allow them to recover energy during idle periods.
Two kinds of delay constraints were considered, one a deadline constraint and the other an average delay constraint.
We achieve an Energy Efficient transmission compared to an other algorithms.
(i) Channel coding can be used to conserve energy by transmitting at reduced power levels over longer durations.
(ii) Electro-chemical mechanisms in batteries allow them to recover energy during idle periods.
Two kinds of delay constraints were considered, one a deadline constraint and the other an average delay constraint.
We achieve an Energy Efficient transmission compared to an other algorithms.
-EEOTS algorithm In this paper We merge two unconnected concepts
(i) Channel coding can be used to conserve energy by transmitting at reduced power levels over longer durations.
(ii) Electro-chemical mechanisms in batteries allow them to recover energy during idle periods.
Two kinds of delay constraints were considered, one a deadline constraint and the other an average delay constraint.
We achieve an Energy Efficient transmission compared to an other algorithms.
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code\main.rar
....\output.docx
code