๐๐๐๐ฅ๐ก๐๐ฆ๐ฆ ๐ก๐๐๐๐ฆ ๐ ๐ข๐ฅ๐ ๐ง๐๐๐ก ๐ ๐ฅ๐๐ก๐๐ข๐ ๐ฅ๐๐ฆ๐จ๐๐ง
Consider an application that needs randomness.
If participants cannot verify how the outcome was generated, the result can become difficult to trust.
WINkLink's VRF approach addresses this from a different angle: randomness can be accompanied by cryptographic proof that allows the result to be verified.
That distinction is powerful.
The goal is not simply producing something unpredictable.
The goal is producing randomness with a verifiable basis.
For blockchain applications where unpredictable outcomes matter, that additional property can be fundamental.
It is a good example of how oracle infrastructure can contribute more than external data feeds.
@WinkLink_Oracle
@justinsuntron
#TRONEcoStar
Consider an application that needs randomness.
If participants cannot verify how the outcome was generated, the result can become difficult to trust.
WINkLink's VRF approach addresses this from a different angle: randomness can be accompanied by cryptographic proof that allows the result to be verified.
That distinction is powerful.
The goal is not simply producing something unpredictable.
The goal is producing randomness with a verifiable basis.
For blockchain applications where unpredictable outcomes matter, that additional property can be fundamental.
It is a good example of how oracle infrastructure can contribute more than external data feeds.
@WinkLink_Oracle
@justinsuntron
#TRONEcoStar
