USRE49334E

Multifactorial optimization system and method

Claim Score by NHIP

Read claim 15, the broadest

Abstract

A method for providing unequal allocation of rights among agents while operating according to fair principles, comprising assigning a hierarchal rank to each agent; providing a synthetic economic value to a first set of agents at the a high level of the hierarchy; allocating portions of the synthetic economic value by the first set of agents to a second set of agents at respectively different hierarchal rank than the first set of agents; and conducting an auction amongst agents using the synthetic economic value as the currency. A method for allocation among agents, comprising assigning a wealth generation function for generating future wealth to each of a plurality of agents, communicating subjective market information between agents, and transferring wealth generated by the secure wealth generation function between agents in consideration of a market transaction. The method may further comprise the step of transferring at least a portion of the wealth generation function between agents.

USRE49334E, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 29 August 2026, 0.1 years ago.

  1. Priority and filed
  2. Granted
  3. Expired
  4. Today

24 claims: 5 independent, 19 dependent

  1. 1
    A networking system for controlling an allocation of at least one physical resource by at least one automated control within a network having a changing network state associated with a network state risk, based on a received control signal, comprising:a memory configured to store parameters of a network model, comprising a first set of stored values representing an estimate of the changing network state;an automated arbitrage agent, comprising at least one automated processor and being operationally associated with the memory and the an automated communication network interface port, configured to: (1) engage in a negotiation of an automatic arbitrage transaction based on at least ;(a) an analysis of the network state risk , and (b) a self-interest of the automated arbitrage agent, with at least one automated counterparty, with respect to a communication of information relating to the first set of stored values, the negotiation comprising at least one automated communication through the automated communication network interface port, (2) engage in the transaction comprising a communication of at least a portion of information defining the estimate of the changing network state through the automated communication network interface port, (3) update the network model ;, and (4) generate the control signal selectively dependent on the updated network model;and an output of the automated arbitrage agent configured to communicate at least one of the generated control signal and information dependent on the generated control signal.
  2. 15
    Broadest claimClaim Score 40, average(NHIP)A networking method for producing a control signal for automatically controlling an allocation of at least one physical resource within an automated network, comprising:maintaining a network model as a set of stored parameters in a memory, representing an estimate of a changing network state subject to a communication risk dependent on the allocation of the at least one physical resource;providing an automated arbitrage agent, comprising at least one automated processor operationally associated with the memory and an automated communication network interface port;engaging in an automated negotiation of an automatic arbitrage transaction based on at least (a) an analysis of the communication risk, and (b) a self-interest of the automated arbitrage agent, between the automated arbitrage agent and at least one automated counterparty by communications through the automated communication network interface port, the automatic arbitrage transaction being for communicating information to alter an estimate of the communication risk by the automated arbitrage agent;engaging in the negotiated automatic arbitrage transaction comprising communicating the information to alter the estimate of the communication risk by the automated arbitrage agent;updating the maintained network model;generating the control signal dependent on at least the altered estimate of the communication risk by the automated arbitrage agent;and at least one of communicating the generated control signal and communicating information dependent on the generated control signal.
  3. 18
    A networking method comprising:storing parameters defining a network model of a communication network having a changing state in a memory, comprising network state information for estimating a time-varying state of the communication network and a reliability risk of at least one physical resource within the communication network;providing an automated arbitrage agent which acts in its own self-interest, comprising at least one automated processor and being associated with the memory;engaging in an automated negotiation based on at least (a) an analysis of the reliability risk, and the (b) self-interest of the automated arbitrage agent, through an automated communication network between the automated arbitrage agent and at least one automated counterparty, of a transaction comprising a communication of the network state information;communicating the network state information through the automated communication network in accordance with the automated negotiation of the transaction;estimating the communication network state and the reliability risk of the at least one physical resource within the communication network based on at least the network model and the communicated network state information;updating the stored parameters defining the network model in the memory based on at least the communicated network state information;generating a control signal, by at least one automated control, for automatically altering an allocation of at least one physical resource within the network, dependent on at least the estimated communication network state and the reliability risk of the at least one physical resource within the communication network;and communicating at least one of the generated control signal and information dependent on the generated control signal.
  4. 21
    A communication networking system, comprising:a memory configured to store a communication network model of an estimate of a varying network state of an automated communication network comprising a plurality of physical communication resources, comprising an estimate of a risk of future impaired function of the plurality of physical communication resources, the estimate being dependent on an availability of network state information for the automated communication network;an automated arbitrage agent, configured to: engage in an automated negotiation with respect to at least (a) a self-interest of the automated arbitrage agent, and (b) an analysis of the risk of future impaired function, through the automated communication network , with at least one other automated arbitrage agent, with respect to a transaction to communicate network state information for the automated communication network, wherein the transaction to communicate the network state information for the automated communication network incurs a transmission cost;conclude the negotiated transaction by communicating the network state information for the automated communication network and a compensation for the transmission cost;update the communication network model based on at least the communicated network state information for the automated communication network;update the estimate of the risk of future impaired function of the plurality of physical communication resources based on the updated communication network model;and produce an automated communication network control signal dependent on at least the updated communication network model updated and the updated estimate of the risk of future impaired function of the plurality of physical communication resources;and at least one automated control, configured to allocate the plurality of physical communication resources in dependence on at least the automated communication network control signal.
  5. 23
    A networking system comprising:a network model comprising a set of stored values representing statistical estimates of a varying availability state of an automated network comprising physical elements, an accuracy of the statistical estimates being limited by availability of state information for the automated network;and an automated arbitrage agent, comprising at least one automated processor and a communication network interface port, configured to: engage in an automated negotiation based on at least (a) an analysis of the statistical estimates of the varying availability state, and (b) a self-interest of the automated arbitrage agent , through the communication network interface port, between the automated arbitrage agent and an automated counterparty agent;engage in an automatic arbitrage transaction through the communication network interface port with the automated counterparty agent, the transaction comprising at least communicating previously unavailable automated network state information for the automated network to increase an accuracy of the statistical estimates, and a token representing compensation for the arbitrage transaction, and update the network model based on the communicated previously unavailable automated network state information for the automated network;and account for the communicated token;and a control, configured to automatically control the automated network in dependence on the updated network model comprising the set of stored values, the control having an output signal selectively dependent on the network model.