With fast and safe processing methods based on DAG and independent management of historical information through “Event Data”, the DAST Protocol is intended to be expanded into various industries along with Smart Contracts.
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DAST’s sidechains and payment channels also increase exponentially the number of transactions per second because the transactions are written to the main chain when all are finalized.
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This is achieved by adopting a method where few nodes verify the previous transaction by a simple query to the index (VI) and OIIVT, and events are verified and processed asynchronously without being approved by the miners as in prior blockchains.
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Thus, DAST believes parallel approach is required.
DAST Chain is intended to solve the scalability limitations of existing blockchain with the DAST Protocol.
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Therefore, no matter how many nodes are connected, the performance will be limited by the speed of each node.
The more transactions require processing, the worse the performance due to bottlenecks on the network itself.
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In existing blockchains, all nodes verify and store a single block at a time, leading to longer time in creating blocks and limitations in block size.
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If 100 nodes are available, around 700~1000 event blocks are created per second and are verified at the same time. Since each stage verifies and processes approximately 700 to 1000 event blocks, high performance TPS can be achieved.
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Every time the number of event blocks reaches 2/3 of the entire nodes participating in sessions, the DAST protocol adds and verifies another session.
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Assuming that the number of transactions requested is infinite and that 100 nodes are participating, each node would asynchronously and simultaneously create 7 to 10 event blocks per second.
As an example, assuming that each transaction is 260 Bytes, a single event block can include up to 440 transactions. If the time it takes for each node to create an event block is 0.1 seconds, each node can create 7 to 10 event blocks per second.
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The size of each event block processed by the DCA is intended to be expanded up to 100KB, which DAST believes will be sufficient due to faster block propagation.
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In the past, all participants verified each block sequentially. However, the DAST Protocol algorithm is designed to asynchronously verify and process event blocks in a distributed, concurrent method.
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As each node can processes transactions that are broadcasted to the DAST network when he is part of a governance session, it provides excellent transaction processing speed.
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The DAST Chain, which is based on the DAST Protocol algorithm of DAST, is intended to perform multiple verifications simultaneously, and conduct tests on the directions and validity of transactions at the same time.
DAST chain intends
to not only process large numbers of transactions at scale but also processes event and historical data that can ensure the reliability of transactions.
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