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公开(公告)号:US12200107B1
公开(公告)日:2025-01-14
申请号:US18177568
申请日:2023-03-02
Applicant: Wells Fargo Bank, N.A.
Inventor: Brad A. Shea , Jeff J. Stapleton , Robert L. Carter, Jr. , Pierre Arbajian , Peter Bordow , Michael Erik Meinholz
Abstract: A computing entity accesses one or more blocks of a blockchain, encrypts the content of the one or more blocks using a first cryptographic technique to generate one or more first encrypted block values, and writes a first side chain block comprising the one or more first encrypted block values and a first signature to a first side chain. The computing entity accesses at least one of (a) at least one block of a particular second set of one or more second sets of the plurality of blocks or (b) one or more first side chain blocks corresponding to blocks of the second set, encrypts the content of the accessed block(s) using a second cryptographic technique to generate at least one second encrypted block value, and writes a second side chain block comprising the at least one second encrypted block value and a second signature to a second side chain.
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公开(公告)号:US20250015980A1
公开(公告)日:2025-01-09
申请号:US17661481
申请日:2022-04-29
Applicant: Wells Fargo Bank, N.A.
Inventor: Jeff J. Stapleton , Peter Bordow
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for facilitating extended range encrypted communication. An example method includes automatically navigating, via navigation circuitry of a first drone, to a first location of a first device. The example method also includes generating, by quantum random number generator circuitry of the first drone, a cryptographic key. The example method also includes establishing, by communications hardware of the first drone, a first connection between the first drone and the first device. The example method also includes causing transmission, by the communications hardware of the first drone, of the cryptographic key to the first device, such that the cryptographic key facilitates secure communication between the first drone and the first device.
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公开(公告)号:US12189833B2
公开(公告)日:2025-01-07
申请号:US18434537
申请日:2024-02-06
Applicant: Wells Fargo Bank, N.A.
Inventor: Michael Erik Meinholz , Peter Bordow , Robert L. Carter, Jr. , Pierre Arbajian , Jeff J. Stapleton
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for hardware-level encryption by generating and using a quantum obfuscation map (QOM). An example method includes generating one or more quantum obfuscation elements (QOEs) based on a one or more quantum particles and generating the QOM based on the one or more QOEs. The example method further includes receiving an indication of an instance of information/data and determining a location within a memory or a disk storage for each section in a plurality of sections corresponding to the instance of information/data based on the generated QOM.
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公开(公告)号:US12079689B1
公开(公告)日:2024-09-03
申请号:US17366338
申请日:2021-07-02
Applicant: WELLS FARGO BANK, N.A.
Inventor: Abhijit Rao , Vanio Markov , Peter Bordow
IPC: G06N10/00 , G06F8/34 , G06F15/16 , G06N20/00 , G06F3/0484 , G06F16/182 , G06N3/04 , G06N5/01 , H03K19/195
CPC classification number: G06N10/00 , G06F8/34 , G06F15/16 , G06N20/00 , G06F3/0484 , G06F16/182 , G06N3/04 , G06N5/01 , H03K19/195
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for low-code utilization of a computing system involving a classical computing device and a quantum computing device. An example method includes receiving, by formulation circuitry, an input from an interaction modality. The example method includes transmitting, by the formulation circuitry, the input to a machine learning model to produce an intermediate output. The example method includes determining, by the formulation circuitry, a type of computing device needed for based on the intermediate output. The example method includes generating, by a first runtime circuitry, one or more algorithms based on the determined type of computing device. The example method includes executing, by a second runtime circuitry, the one or more algorithms on one or more corresponding computing devices to produce an output. The example method further includes packaging, by the formulation circuitry, the output for transmission via the interaction modality.
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公开(公告)号:US20230409698A1
公开(公告)日:2023-12-21
申请号:US18241016
申请日:2023-08-31
Applicant: Wells Fargo Bank, N.A.
Inventor: Peter Bordow
CPC classification number: G06F21/45 , G06F21/32 , H04L63/0861 , H04L63/083 , H04W12/068 , H04L63/0853 , G06F3/04847
Abstract: Disclosed are example methods, systems, and devices that allow for generation and maintenance of a central identity databank for a user's digital life. The identity databank may include identity elements with payload values and metadata values corresponding immutable attributes of the user. A multifactor identity authentication protocol allows service provider devices to more reliably validate transactions with user devices via an identity system. The identity databank may include passwords, which may be generated by the identity system linked to user accounts and/or service providers. The passwords may be provided to service provider devices, eliminating the need for users to conceive of a multitude of varying passwords for the user's accounts.
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公开(公告)号:US20230306142A1
公开(公告)日:2023-09-28
申请号:US18295488
申请日:2023-04-04
Applicant: Wells Fargo Bank, N.A.
Inventor: Michael Erik Meinholz , Peter Bordow , Robert L. Carter, JR. , Pierre Arbajian , Jeff J. Stapleton
CPC classification number: G06F21/79 , G06N10/00 , H04L9/0618 , H04L9/0852
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for hardware-level encryption. An example method includes receiving an instance of information/data by processing circuitry; and disassembling, by the processing circuitry, the instance of information/data into a plurality of sections. The processing circuitry assigns each section of the plurality of sections a location in an allocated portion of memory. The locations are determined based at least in part on a quantum obfuscation map (QOM). The QOM is generated based on one or more quantum obfuscation elements (QOEs) corresponding to a quantum state of a quantum particle. The processing circuitry then causes each of the plurality of sections to be stored at the corresponding assigned location in the allocated portion of the memory.
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公开(公告)号:US11663510B1
公开(公告)日:2023-05-30
申请号:US16696221
申请日:2019-11-26
Applicant: WELLS FARGO BANK, N.A.
Inventor: Robert L. Carter, Jr. , Bradford A. Shea , M. Erik Meinholz , Jeff J. Stapleton , Peter Bordow , Pierre Arbajian
CPC classification number: G06N10/00 , B82Y10/00 , H04B10/70 , H04L9/0825 , H04L9/0852 , H04L63/08
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for quantum entanglement authentication (QEA). An example method includes generating, at a first computing device, a first number based on a subset of a first set of entangled quantum particles comprised by a quantum authentication device and associated with the first computing device. Each entangled quantum particle in the first set of entangled quantum particles may be entangled with a respective entangled quantum particle in a second set of entangled quantum particles associated with a second computing device. The example method further includes transmitting an electronic identification of the subset of the first set of entangled quantum particles to the second computing device. In some instances, the example method may further include receiving a second number from the second computing device and authenticating a session between the first computing device and the second computing device in an instance in which the second number corresponds, or is identical, to the first number.
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公开(公告)号:US11645428B1
公开(公告)日:2023-05-09
申请号:US16787244
申请日:2020-02-11
Applicant: Wells Fargo Bank, N.A.
Inventor: Michael Erik Meinholz , Peter Bordow , Robert L. Carter, Jr. , Pierre Arbajian , Jeff J. Stapleton
CPC classification number: G06F21/79 , G06N10/00 , H04L9/0618 , H04L9/0852 , H04L2209/16
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for hardware-level encryption. An example method includes receiving an instance of information/data by processing circuitry; and disassembling, by the processing circuitry, the instance of information/data into a plurality of sections. The processing circuitry assigns each section of the plurality of sections a location in an allocated portion of memory. The locations are determined based at least in part on a quantum obfuscation map (QOM). The QOM is generated based on one or more quantum obfuscation elements (QOEs) corresponding to a quantum state of a quantum particle. The processing circuitry then causes each of the plurality of sections to be stored at the corresponding assigned location in the allocated portion of the memory.
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公开(公告)号:US11552793B1
公开(公告)日:2023-01-10
申请号:US16566030
申请日:2019-09-10
Applicant: WELLS FARGO BANK, N.A.
Inventor: Bradford A. Shea , M. Erik Meinholz , Robert L. Carter, Jr. , Jeff J. Stapleton , Abhijit Rao , Pierre Arbajian , Peter Bordow , Ravi K. Maganti
Abstract: Systems, apparatuses, methods, and computer program products are disclosed for post-quantum cryptography (PQC). An example method includes transmitting a first portion of an electronic communication to a client device over a non-PQC communications channel. The example method further includes transmitting a second portion of the electronic communication to the client device over a PQC communications channel. In some instances, the first portion of the electronic communication may comprise overhead data, and the second portion of the electronic communication may comprise payload data.
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公开(公告)号:US11514155B1
公开(公告)日:2022-11-29
申请号:US17353126
申请日:2021-06-21
Applicant: Wells Fargo Bank, N.A.
Inventor: Peter Bordow
IPC: H04L9/40 , H04W12/06 , G06F21/45 , G06F21/32 , G06F3/04847
Abstract: Disclosed are example methods, systems, and devices that allow for generation and maintenance of a central identity databank for a user's digital life. The identity databank may include identity elements with payload values and metadata values corresponding immutable attributes of the user. A multifactor identity authentication protocol allows service provider devices to more reliably validate transactions with user devices via an identity system. The identity databank may include passwords, which may be generated by the identity system linked to user accounts and/or service providers. The passwords may be provided to service provider devices, eliminating the need for users to conceive of a multitude of varying passwords for the user's accounts.
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