Building the protocol layer for a new blockchain layer using proof-of-geospace as the constraint function. Quantum-proofed from the ground-up (and certified proof by Canada's largest cybersecurity lab), the consensus quorum and model is predicated on a node's network position (and, by extension, physical radius). Architecture of the network builds around minimal number of nodes, and quorum not requiring the full network, rather a sufficiency in nodes. This eliminates the typical network's n^2 Problem, substantially mitigates vulnerabilities (e.g. Sybil), and enables v. large concurrent transaction volumes and very low gas cost. Further work on the economics is underway, and the white-paper is under construction....
Building the protocol layer for a new blockchain layer using proof-of-geospace as the constraint function. Quantum-proofed from the ground-up (and certified proof by Canada's largest cybersecurity lab), the consensus quorum and model is predicated on a node's network position (and, by extension, physical radius). Architecture of the network builds around minimal number of nodes, and quorum not requiring the full network, rather a sufficiency in nodes. This eliminates the typical network's n^2 Problem, substantially mitigates vulnerabilities (e.g. Sybil), and enables v. large concurrent transaction volumes and very low gas cost. Further work on the economics is underway, and the white-paper is under construction.
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