Polygon Plans ‘AggLayer,’ in Bid to Synthesize Modular, Monolithic Blockchains

Polygon Plans ‘AggLayer,’ in Bid to Synthesize Modular, Monolithic Blockchains

Polygon Labs, a designer of blockchain jobs developed to assist scale Ethereum, revealed prepare for a brand-new “aggregation layer,” under a strategy to develop a “web” of networks that “seems like a single chain.”

The brand-new “AggLayer,” set for launch next month, counts on zero-knowledge evidence, a kind of cryptography that Polygon Labs is banking on as a core foundation of future blockchain architecture.

According to a article on Wednesday, “aggregation manufactures the advantages of both incorporated (monolithic) and modular architectures utilizing ZK innovation.”

So-called “monolithic” blockchains, consisting of Ethereum, are vertically incorporated, with performance for deal execution, security and information storage all consisted of. Designers are significantly turning to “modular” styles, where networks can strap together various parts and service providers to serve the different functions.

The objective of the brand-new Polygon Labs task is to mix everything together.

“Devs can link any layer-1 or layer-2 chain to the AggLayer, constructing a Web3 network that seems like a single chain with merged liquidity and almost unrestricted scalability,” the post checks out.

Schematic from the Polygon Labs post demonstrating how the brand-new “aggregation layer” would work. (Polygon Labs)

The concept originates from the drawbacks of modular and monolithic blockchains, Polygon Labs stated. On the AggLayer, users can purchase non-fungible tokens on a various chain without needing to bridge those funds by using ZK evidence, or send out properties to take part in activities on other chains.

“Aggregation uses the sovereignty and scale of modular architectures, in addition to the combined liquidity and UX of a monolithic system, manufacturing these 2 methods into something unique,” Polygon Labs composed. “UX” is brief for “user experience.”

Modified by Bradley Keoun.

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