Abstract:
Performance impact of a computing system component on a transient end-to-end system operation is estimated by profiling an overall characteristic for a transient end-to-end system operation, and simultaneously profiling a program code component for a second characteristic, thereby collecting a first pair of data points, repeating the operational period while introducing a known artificial delay into the program code component, and while profiling the overall performance characteristic for the system and for the program code component, thereby collecting pairs of data points for each repetition of the operational period for each of the artificial delays; curve fitting and analyzing intercepts of the collected data points to estimate the effect of the artificial delays in the program code component on the transient end-to-end system operation; and reporting the estimate correlated to potential optimal transient end-to-end system operation.
Abstract:
A management system for managing computer resources assigned by a hypervisor to one or more logical partitions and/or one or more appliance partitions in a multi-user computer system receives login information from a new user logging into the computer system through a service interface (e.g. a hardware management console) or a non-service interface, builds a conflict list, and sends the conflict list for presentation to the new user. The new user is notified of any users that are logged into any part of the computer system that could conflict with the new user's actions. Such users may be logged into the computer system through service and/or non-service interfaces. In one embodiment, the new user can choose to continue logging in irrespective of any conflicts shown. After choosing to continue, the new user is preferably requested to input an end-time. This end-time may be displayed, in turn, to all subsequent users that log into any part of the computer system that could cause conflict. The management system is preferably a component of the hypervisor.
Abstract:
System and method to estimate variables in an integrated gasification combined cycle (IGCC) plant are provided. The system includes a sensor suite to measure respective plant input and output variables. An extended Kalman filter (EKF) receives sensed plant input variables and includes a dynamic model to generate a plurality of plant state estimates and a covariance matrix for the state estimates. A preemptive-constraining processor is configured to preemptively constrain the state estimates and covariance matrix to be free of constraint violations. A measurement-correction processor may be configured to correct constrained state estimates and a constrained covariance matrix based on processing of sensed plant output variables. The measurement-correction processor is coupled to update the dynamic model with corrected state estimates and a corrected covariance matrix. The updated dynamic model may be configured to estimate values for at least one plant variable not originally sensed by the sensor suite.
Abstract:
Techniques are disclosed for conveying which hardware components of a logically partitioned computer system are assigned to a selected logical partition of the computer system. Partition information for the computer system is received. Further, a request is received from a user to view which hardware components of the computer system are assigned to a selected logical partition of the computer system. Based on the received partition information, one or more hardware components are determined that are assigned to the selected logical partition. Based on the determined hardware components, a virtual model of the computer system is generated that visually distinguishes hardware components assigned to the selected logical partition from hardware components not assigned to the selected logical partition. The virtual model is output responsive to the request.
Abstract:
Methods, systems, and apparatus, including computer programs encoded on a computer storage medium, for exporting electronic documents in a rich internet application environment are described. In one aspect, a method includes generating a display object based at least in part on a rich internet application interpreting an application data object. The display object includes displayable features and non-displayable features associated with the displayable features. A rich internet application platform runs the rich internet application and includes an export resource adapted to be invoked by multiple different rich internet applications. The export resource receives the display object and identifies components of the display object and an arrangement of the components. The export resource generates an electronic document based at least in part on the identified components and the identified arrangement. The generated electronic document includes the displayable features and the non-displayable features.
Abstract:
A low-level logical partitioning function associates partitions, partitionable entities, and location codes. Partitionable entities are hardware components, not necessarily individually replaceable. The location code reflects the physical topology of the system packaging. It is preferably a string of concatenated elements, each element representing a device in a hierarchical level of devices which may contain other devices. A respective location code is likewise associated with each of multiple physical indicators. The location code of partitionable entities allocated to a partition is compared with the indicator's location code to determine whether a process executing within a partition can access the indicator. Preferably, each partition has a virtual indicator corresponding to a physical indicator, the state of the physical indicator being derived as a function of the states of multiple virtual indicators for multiple partitions.
Abstract:
A plasma-assisted waste gasification system including a sensing mechanism and process for converting waste stream reaction residues into a clean synthesis gas (syngas) is disclosed. The gasification system includes a first sensor located between a gas quench unit and a heat recovery unit to measure a first temperature and first flow rate of the synthesis gas exiting the gas quench unit; a second sensor to measure a second temperature and a second flow rate of a low temperature synthesis gas entering the gas quench unit; wherein the first sensor and the second sensor are connected to an inferential sensing mechanism. The inferential sensing mechanism is capable of estimating the temperature of the synthesis gas in the reactor, based on the measured first temperature and first flow rate, and the measured second temperature and second flow rate, using a mass-energy balance relationship that is based on the measurements of the two sensors. Another aspect of the invention relates to a control unit to control the temperature of the reactor to a required operating temperature range.
Abstract:
A management system for managing computer resources assigned by a hypervisor to one or more logical partitions and/or one or more appliance partitions in a multi-user computer system receives login information from a new user logging into the computer system through a service interface (e.g. a hardware management console) or a non-service interface, builds a conflict list, and sends the conflict list for presentation to the new user. The new user is notified of any users that are logged into any part of the computer system that could conflict with the new user's actions. Such users may be logged into the computer system through service and/or non-service interfaces. In one embodiment, the new user can choose to continue logging in irrespective of any conflicts shown. After choosing to continue, the new user is preferably requested to input an end-time. This end-time may be displayed, in turn, to all subsequent users that log into any part of the computer system that could cause conflict. The management system is preferably a component of the hypervisor.
Abstract:
A presentation state is received from the presenting application. The presentation state may represent a current state of the local presentation. A request for the presentation state is received from the viewing application. In response to receiving the request for the presentation state, the presentation state is provided to the viewing application. A request for presentation data synchronized to the presentation state is received from the viewing application. In response to receiving the request for presentation data synchronized to the presentation state, the presentation file is transformed into the presentation data synchronized to the presentation state. The presentation data synchronized to the presentation state is provided to the viewing application. The viewing application may be operative to read the presentation data and to display a remote presentation in response to reading the presentation data.
Abstract:
A low-level logical partitioning function associates partitions, partitionable entities, and location codes. Partitionable entities are hardware components, not necessarily individually replaceable. The location code reflects the physical topology of the system packaging. It is preferably a string of concatenated elements, each element representing a device in a hierarchical level of devices which may contain other devices. A respective location code is likewise associated with each of multiple physical indicators. The location code of partitionable entities allocated to a partition is compared with the indicator's location code to determine whether a process executing within a partition can access the indicator. Preferably, each partition has a virtual indicator corresponding to a physical indicator, the state of the physical indicator being derived as a function of the states of multiple virtual indicators for multiple partitions.