Abstract:
Intelligent logic activity resolution (ILAR) is provided for a process. Upon a first trigger event being received, a first subset of conditions of the process is detected. The first subset of conditions is selected based on the first trigger event. When the first subset of conditions match predetermined values, a first state is entered. When the first subset conditions do not match the predetermined values, additional conditions are checked. On the basis of the checked additional conditions, a new state is selected for entry.
Abstract:
Apparatus and method for detecting surface defects on an article freely standing on a conveyer, which generate profile trace data corresponding to profile trace at a cross-section of the article. A surface shape inspection unit comprising an optical ranging system using laser and camera is provided for obtaining the profile trace data through triangulation-based derivation techniques. Base reference curves are derived from regular portions of the profile trace data. Profile trace data are compared to defect threshold curves to recognize a defect induced departure of the trace data with respect to the base reference curve and to produce a defect output signal. The apparatus and method according to the invention are particularly useful for detecting roughness, cavities, wane, missing wood and altered wood on lumber pieces which are conveyed at high speed.
Abstract:
Process and apparatus for the purification of hydrogen by cryogenic treatment of a gas containing also nitrogen oxides and unsaturated hydrocarbons as two types of constituents which react together in an undesirable fashion when cooling achieves an intermediate temperature higher than the low temperature of the treatment. The process comprises cooling the gas to a first temperature higher than that intermediate temperature; eliminating from the gas one of the two types of constituents at this first temperature; and continuing the cooling of the gas to the low temperature. The elimination of one type of component is effected by washing the gas with a liquid adapted to dissolve it. This liquid contains at least one saturated hydrocarbon and is obtained by a partial condensation of an auxiliary gas which contains at least one of hydrogen and a heavy constituent whose value can be increased. The gas treated can be a residual gas from catalytic cracking in a fluidized bed (FCC), and the auxiliary gas can be a hydrotreatment purge gas.
Abstract:
A light component of the compressed mixture is separated by permeation. The remaining heavy fraction is condensed with water, sub-cooled and expanded. The light component, cooled at the same temperature, is added to the sub-cooled condensate, and the whole is vaporized under low pressure to produce the required refrigeration.
Abstract:
Methanol is catalytically cracked (at 4) then the essential portion of the components other than CO is removed by washing with water (at 5), selective adsorption (at 7) and permeation (at 8). The process and apparatus has application to the production of moderate quantity of carbon monoxide.
Abstract:
A method of testing a device. The method comprises determining a computational window. The computational window is a time period of device testing activity below an activity threshold. The at least one computational window occurs during the device testing activity. The method further comprises creating and executing a decision tree during the computational window. The decision tree comprises a scheduled test analysis of test results and a selection of test control actions scheduled to execute in response to the test analysis.
Abstract:
The invention relates to a power train for a hybrid vehicle, comprising two hydraulic machines (20, 22) including variable displacement, both of which are connected to a hydraulic pressure accumulator (24) which stores energy, a first hydraulic machine (20) being permanently connected to an internai combustion traction engine (2), and a second hydraulic machine (22) being connected, also permanently, to drive wheels (8) of the vehicle, characterized in that the two hydraulic machines (20, 22) are also interconnected by a linking means (10) that can be engaged or disengaged.
Abstract:
A system for detecting an electrostatic discharge event with respect to a device to be monitored includes a current measurement device configured to measure a current flowing via a power supply connection connecting the device to be monitored with the power supply to obtain a current measurement signal representing the current or a current component. Alternatively, a current flowing through a protective earth connection connecting the device to be monitored with the protective earth is measured to obtain the measurement signal. The system includes an electrostatic discharge event detector configured to detect an electrostatic discharge event in response to a pulse of the current measurement signal. The system may optionally include data processing of current measurement signals or values.
Abstract:
The invention relates to a variable displacement hydraulic machine, in particular for a motor vehicle, said hydraulic machine comprising a rotating cylinder (10) including a series of axial pistons (12) connected to a first plate (14) axially located on one side of said cylinder within a substantially transverse plane, the slope of which can be controlled, so as to form a first controllable displacement for said machine, wherein said machine is characterized in that the cylinder (10) further comprises a second series of axial pistons (22) connected to a second plate (24), the slope of which is also controllable, said plate being axially located, relative to the first plate (14), on the other side of said cylinder so as to form a second controllable displacement for said machine.
Abstract:
A method of testing a device. The method comprises determining a computational window. The computational window is a time period of device testing activity below an activity threshold. The at least one computational window occurs during the device testing activity. The method further comprises creating and executing a decision tree during the computational window. The decision tree comprises a scheduled test analysis of test results and a selection of test control actions scheduled to execute in response to the test analysis.