Abstract:
A method for detecting and isolating domain specific faults includes comparing a first media quality report for a communication from a first node with a second media quality report for the communication from a second node. The first node comprises an ingress node of a first domain for the communication and the second node comprises an egress node of the first domain for the communication. The method also includes determining that the difference between at least one aspect of the first media quality report and at least one corresponding aspect of the second media quality report exceeds a first threshold. The method further includes, upon determining that the difference exceeds the first threshold, determining a first path between the first node and the second node used by the communication. The method additionally includes isolating at least one source causing the difference between the first media quality report and the second media quality report.
Abstract:
A method for alert throttling in media quality monitoring, includes monitoring a plurality of active communication sessions. Each active communication session is between at least two endpoints. The method also includes detecting at least one quality-impacted communication session out of the plurality of active communication sessions. The method also includes generating a first alert for each detected quality-impacted communication session out of the plurality of active communication sessions until a first throttling number of quality-impacted communication sessions is detected out of the plurality of active communication sessions. Upon detecting the first throttling number of quality-impacted communication sessions, the method includes generating a second alert for each group of additional second number of quality-impacted communication sessions detected out of the plurality of active communication sessions.
Abstract:
A method for initiating a remote trace route includes establishing a communication session between a first endpoint and a second endpoint. The method also includes detecting at the first endpoint a quality impairment in a communication sent from the second endpoint. In response to detecting the quality impairment, the method includes sending a request from the first endpoint to the second endpoint for the second endpoint to initiate a trace route from the second endpoint to the first endpoint. Upon receiving the request at the second endpoint, the method includes initiating a trace route from the second endpoint to the first endpoint.
Abstract:
The present disclosure is directed to systems and methods of conductively coupling a plurality of relatively physically small core dies to a relatively physically larger base die using an electrical mesh network that is formed in whole or in part in, on, across, or about all or a portion of the base die. Electrical mesh networks beneficially permit the positioning of the cores in close proximity to support circuitry carried by the base die. The minimal separation between the core circuitry and the support circuitry advantageously improves communication bandwidth while reducing power consumption. Each of the cores may include functionally dedicated circuitry such as processor core circuitry, field programmable logic, memory, or graphics processing circuitry. The use of core dies beneficially and advantageously permits the use of a wide variety of cores, each having a common or similar interface to the electrical mesh network.
Abstract:
A proppant comprises a particle and a polycarbodiimide coating disposed on the particle. The polycarbodiimide coating comprises the reaction product of a polymeric isocyanate and a monomeric isocyanate, in the presence of a catalyst. A method of forming the proppant comprises the steps of providing the particle, providing the polymeric isocyanate, providing the monomeric isocyanate, providing the catalyst, reacting the polymeric isocyanate and the monomeric isocyanate in the presence of the catalyst to form the polycarbodiimide coating, and coating the particle with the polycarbodiimide coating.
Abstract:
An interface. A first set of single-ended transmitter circuits reside on a first die having a master device. A first set of single-ended receiver circuits reside on a second die. The receiver circuits have no termination and no equalization. The second die has a slave device responsive to the master device of the first die. Conductive lines connect the first set of transmitter circuits and the first set of receiver circuits. The lengths of the conductive lines are matched.
Abstract:
The invention comprises a connection system, implemented as an apparatus and method of use thereof, for linking vehicle towing related information with a service and/or a product provided by a company. The connection system optionally timely provides information about a towed vehicle and/or towing event to a service system where the towing related information is optionally: obtained through a standardized uplink utilized by a set of towing companies; used to develop a towing/services relationship calibration; provided to a probabilistic prediction system; directly related to an incident; related to non-incident vehicle status; related to a specific actor, location, incident, vehicle type, and/or vehicle sub-system; and/or is provided to the service system, such as a retailor or a vendor.
Abstract:
A dust suppressing aggregate includes a core particle and a dust suppressing agent. The dust suppressing agent comprises polycarbodiimide and is disposed about the core particle for suppressing dusting of the core particle. A method of forming the dust suppressing aggregate includes the steps of reacting isocyanates in the presence of a catalyst to form the polycarbodiimide and encapsulating the core particle with the polycarbodiimide to form the dust suppressing agent. A system for producing the dust suppressing aggregate includes the core particle, the isocyanates, and the catalyst.
Abstract:
Systems and methods for training users. Surgical data related to surgical procedures done by expert level users is collected from surgical robots. The surgical data is segmented into surgemes and dexemes. The training users are trained at a level of the surgemes and/or a level of the dexemes by guiding the training users with surgical simulators to practice the surgemes and/or the dexemes, wherein the surgical simulators simulate surgery done by an expert level user.
Abstract:
An interface. A first set of single-ended transmitter circuits reside on a first die having a master device. A first set of single-ended receiver circuits reside on a second die. The receiver circuits have no termination and no equalization. The second die has a slave device responsive to the master device of the first die. Conductive lines connect the first set of transmitter circuits and the first set of receiver circuits. The lengths of the conductive lines are matched.