US 12,470,413 B2
Methods and systems for providing a customized network
Eileen Chu Hing, Cambridge, MA (US); and Charles Joseph Hing, Somerville, MA (US)
Assigned to Eileen Chu Hing, Cambridge, MA (US)
Filed by Eileen Chu Hing, Cambridge, MA (US); and Charles Joseph Hing, Somerville, MA (US)
Filed on Oct. 15, 2018, as Appl. No. 16/161,014.
Prior Publication US 2020/0118120 A1, Apr. 16, 2020
Int. Cl. G06F 16/27 (2019.01); G06F 16/18 (2019.01); G06F 16/182 (2019.01); H04L 9/00 (2022.01); H04L 9/08 (2006.01); G06Q 20/38 (2012.01)
CPC H04L 9/50 (2022.05) [G06F 16/182 (2019.01); G06F 16/27 (2019.01); H04L 9/0861 (2013.01)] 92 Claims
OG exemplary drawing
 
1. A computer implemented method comprising:
generating, spawning, or invoking a daughter script in a virtual computing environment residing on a physical server that dynamically generates, spawns, or invokes at least one virtual machine;
dynamically generating, spawning, or invoking by the daughter script at least one smart contract virtual atom or one or more smart contract virtual molecules based on input data, wherein, the at least one smart contract virtual atom or the one or more smart contract virtual molecules includes one or more adaptive instruction sets;
dynamically generating, spawning, or invoking by the daughter script at least asset information virtual atom into a private blockchain network virtual atom based on the input data;
wherein the one or more adaptive instruction sets are executed to form an automated self-executing contract over a smart contract network that is in data communication with a blockchain network exchange, the blockchain network exchange being a public blockchain network and the private blockchain network being a private blockchain separate from the public blockchain network with private transactions that remain private on the private blockchain network,
dynamically generating, by a mother script, a genesis block containing data/asset for the private blockchain network;
dynamically generating, by the mother script, all member nodes of the private blockchain network to meet requirements of Byzantine Fault Tolerance (BFT), wherein genesis block containing data or an asset of the private blockchain network is different and unique from a genesis block containing data or an asset of the public blockchain network; and
wherein the one or more virtual atoms are destroyed by themselves.