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Control current

The Smith predictor is a model-based control strategy that involves a more complicated block diagram than that for a conventional feedback controller, although a PID controller is still central to the control strategy (see Fig. 8-37). The key concept is based on better coordination of the timing of manipulated variable action. The loop configuration takes into account the facd that the current controlled variable measurement is not a result of the current manipulated variable action, but the value taken 0 time units earlier. Time-delay compensation can yield excellent performance however, if the process model parameters change (especially the time delay), the Smith predictor performance will deteriorate and is not recommended unless other precautions are taken. [Pg.733]

Current control can be more advantageous where rail/soil potentials are predominantly positive. Current control is also preferred in the cathodic protection of steel-water construction if the anode resistance fluctuates due to changes in electrical conductivity. [Pg.234]

Current-controlling rectifiers are constructed in general on the same circuit principles as potential-controlling rectifiers only with them, the protection current is converted to a voltage via a constant shunt in the control circuit and fed in as the actual value. With devices with two-point control, the ammeter has limiting value contacts that control the motor-driven controlled transformer. [Pg.236]

The impressed current protection method is used mainly for the internal protection of large objects and particularly where high initial current densities have to be achieved (e.g., in activated charcoal filter tanks and in uncoated steel tanks). There are basically two types of equipment those with potential control, and those with current control. [Pg.448]

Equipment with Current Control Based on Water Consumption... [Pg.450]

Current Controls. What is done at present to reduee the ehanee of this failure oeeurring ... [Pg.296]

Traditional control systems are in general based on mathematical models that describe the control system using one or more differential equations that define the system response to its inputs. In many cases, the mathematical model of the control process may not exist or may be too expensive in terms of computer processing power and memory. In these cases a system based on empirical rules may be more effective. In many cases, fuzzy control can be used to improve existing controller systems by adding an extra layer of intelligence to the current control method. [Pg.301]

The inverter drive system that uses a current-controlled rectifier and parallel-capacitor commutation operates to both improve reliability and reduce cost. Such systems are built commercially for the ranges from 20 to 500 hp for the typical 20 1 constant-torque speed range. [Pg.418]

Commercial polarographs are also available in which the voltage scan is carried out automatically while a chart recorder plots the current-voltage curve. A counter-current control is incorporated which applies a small opposing current to the cell which can be adjusted to compensate for the residual current this leads to polarograms which are better defined. Most of these instruments also incorporate circuits which permit the performance of alternative, more sensitive types of polarography as discussed in Section 16.9... [Pg.606]

Carboxylic acids can be converted by anodic oxidation into radicals and/or carbo-cations. The procedure is simple, an undivided beaker-type cell to perform the reaction, current control, and usually methanol as solvent is sufficient. A scale up is fairly easy and the yields are generally good. The pathway towards either radicals or carbocations can be efficiently controlled by the reaction conditions (electrode material, solvent, additives) and the structure of the carboxylic acids. A broad variety of starting compounds is easily and inexpensively available from natural and petrochemical sources, or by highly developed procedures for the synthesis of carboxylic acids. [Pg.142]

Type 2 diabetes mellitus since age 36 it is often not well controlled because of poor patient compliance Hypertension x 3 years, currently controlled History of hepatitis B... [Pg.265]

Type 1 diabetes mellitus since age 5, currently controlled... [Pg.690]

Hypertension for 12 years, currently controlled Hyperlipidemia for 10 years, currently controlled Osteoarthritis for 5 years... [Pg.706]

Type 2 diabetes for 15 years not controlled due to his stressful profession he often works late, eats on the run, and has no time for exercise Hypertension for 8 years, currently uncontrolled Dyslipidemia for 8 years, currently controlled... [Pg.783]

Insulin-dependent diabetes mellitus since age 7 it is "reasonably well-controlled" per patient Hypertension for 2 years, currently "controlled" per patient... [Pg.808]

Hypertension diagnosed 5 years ago, currently controlled Seasonal allergic rhinitis... [Pg.827]


See other pages where Control current is mentioned: [Pg.375]    [Pg.606]    [Pg.606]    [Pg.203]    [Pg.428]    [Pg.431]    [Pg.431]    [Pg.432]    [Pg.434]    [Pg.311]    [Pg.373]    [Pg.2552]    [Pg.22]    [Pg.107]    [Pg.126]    [Pg.987]    [Pg.237]    [Pg.450]    [Pg.77]    [Pg.75]    [Pg.218]    [Pg.83]    [Pg.164]    [Pg.613]    [Pg.56]    [Pg.239]    [Pg.374]    [Pg.374]    [Pg.690]    [Pg.767]    [Pg.1054]    [Pg.1054]    [Pg.1308]   
See also in sourсe #XX -- [ Pg.291 ]

See also in sourсe #XX -- [ Pg.274 ]




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Controlled-current

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