Multi-dimensional progressive security for personal profiles
Abstract
Aspects of the subject disclosure may include, for example, a system that includes a processing system including at least one processor and a memory that stores executable instructions that, when executed by the processing system, facilitate performance of operations including receiving a unique identifying number for an entity, a vector associated with the entity, and a timestamp from a requestor, generating a key using the unique identifying number, the vector, and the timestamp, and sending the key to the requestor, wherein the requestor uses the key to store information associated with the entity. Other embodiments are disclosed.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A system, comprising:
a processing system including at least one processor; and a memory that stores executable instructions that, when executed by the processing system, facilitate performance of operations, the operations comprising: receiving, from equipment of a requestor, a unique identifying number for an entity, a vector associated with the entity, and a timestamp; generating a key using the unique identifying number, the vector, and the timestamp, wherein the generating comprises identifying an object, an axis of rotation, and a speed of rotation, determining an orientation of the object at the timestamp based upon rotation of the object about the axis of rotation at the speed of rotation, and determining points of intersection of the vector with the object at the orientation; and causing the key to be provided to the equipment of the requestor, wherein the equipment of the requestor uses the key to store information associated with the entity.
2 . The system of claim 1 , wherein the processing system comprises at least three processors communicatively coupled by a communications network.
3 . The system of claim 2 , wherein the at least three processors are at different locations.
4 . The system of claim 2 , wherein each processor of the at least three processors comprises a respective memory, resulting in respective memories.
5 . The system of claim 4 , wherein the object, the axis of rotation, and the speed of rotation are each stored in a respective memory of the at least three processors.
6 . The system of claim 4 , wherein none of the respective memories of the at least three processors comprises all of the object, the axis of rotation, and the speed of rotation.
7 . The system of claim 1 , wherein the key is generated by combining coordinates of the points of intersection.
8 . A non-transitory machine-readable medium, comprising executable instructions that, when executed by a processing system, facilitate performance of operations, the operations comprising:
obtaining, from a requestor, a unique identifying number for a user, a vector associated with the user, and a timestamp; identifying an object, an axis of rotation, and a speed of rotation; determining an orientation of the object at the timestamp based upon rotation of the object about the axis of rotation at the speed of rotation; determining two points of intersection of the vector with the object at the orientation; generating a key from the two points of intersection; and providing the key to the requestor to enable the requestor to store information associated with the user using the key.
9 . The non-transitory machine-readable medium of claim 8 , wherein the processing system comprises at least three processors communicatively coupled by a communications network.
10 . The non-transitory machine-readable medium of claim 9 , wherein the at least three processors are at different locations.
11 . The non-transitory machine-readable medium of claim 9 , wherein each processor of the at least three processors comprises a respective memory, resulting in respective memories.
12 . The non-transitory machine-readable medium of claim 11 , wherein the object, the axis of rotation, and the speed of rotation are each stored in a respective memory of the at least three processors.
13 . The non-transitory machine-readable medium of claim 11 , wherein none of the respective memories of the at least three processors comprises all of the object, the axis of rotation, and the speed of rotation.
14 . The non-transitory machine-readable medium of claim 8 , wherein the key is generated by combining coordinates of the two points of intersection.
15 . A method, comprising:
receiving, by a processing system including at least one processor, and from equipment of a requestor, a unique value for an entity, a vector associated with the entity, and a timestamp; generating, by the processing system, a key using the unique value, the vector, and the timestamp, wherein the generating comprises finding an object, an axis of rotation, and a speed of rotation, determining an orientation of the object at the timestamp when the object is rotated about the axis of rotation at the speed of rotation, determining points of intersection of the vector with the object at the orientation; and transmitting, by the processing system, the key to the equipment of the requestor to cause the equipment of the requestor to use the key to store information associated with the entity.
16 . The method of claim 15 , wherein the processing system comprises at least three processors communicatively coupled by a communications network.
17 . The method of claim 16 , wherein the at least three processors are at different locations.
18 . The method of claim 16 , wherein each processor of the at least three processors comprises a respective memory, resulting in respective memories.
19 . The method of claim 18 , wherein the object, the axis of rotation, and the speed of rotation are each stored in a respective memory of the at least three processors.
20 . The method of claim 18 , wherein none of the respective memories of the at least three processors comprises all of the object, the axis of rotation, and the speed of rotation.Join the waitlist — get patent alerts
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