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Feedback method

The development lab can benefit from valuable objective data to detect method shortcomings and to identify gaps in the method development process. The feedback on method performance should be discussed regularly. During the monitoring a number of key performance indicators are recorded and filled out in feedback sheets by the application labs (stability and operational labs) each time the method is applied. The method feedback sheet is sent together with the method description to the application labs at transfer. An example of such a feedback sheet is shown in Figure 22. [Pg.93]

This RCCA inspection methods has now already proven it s reliability as an industrial solution on two Belgian power plants (Doel 3 and Tihange 1). Thanks to the graphical programming language, each site feedback is immediately injected. This way of working ensures a permanent improvement of the analysis system, and a reduction in manpower for the analysis. [Pg.1008]

The most useful methods for quality assessment are those that are coordinated by the laboratory and that provide the analyst with immediate feedback about the system s state of statistical control. Internal methods of quality assessment included in this section are the analysis of duplicate samples, the analysis of blanks, the analysis of standard samples, and spike recoveries. [Pg.708]

The production of elfamycins is described in the references cited in Table 1. Fermentation yield improvements with aurodox (1, R = CH ) proved difficult because of feedback inhibition (48). Aurodox-resistant strains (49), however, responded positively to conventional mutagenic methods leading to yield increases from 0.4 to 2.5 g/L (50). Scale-up of efrotomycin (7, R = CH ) fermentations were found to be particularly sensitive to small changes in sterilization conditions of the oil-containing medium used (51). [Pg.524]

The effect of the disturbance on the controlled variable These models can be based on steady-state or dynamic analysis. The performance of the feedforward controller depends on the accuracy of both models. If the models are exac t, then feedforward control offers the potential of perfect control (i.e., holding the controlled variable precisely at the set point at all times because of the abihty to predict the appropriate control ac tion). However, since most mathematical models are only approximate and since not all disturbances are measurable, it is standara prac tice to utilize feedforward control in conjunction with feedback control. Table 8-5 lists the relative advantages and disadvantages of feedforward and feedback control. By combining the two control methods, the strengths of both schemes can be utilized. [Pg.730]

Process-variable feedback for the controller is achieved by one of two methods. The process variable can (I) be measured and transmitted to the controller by using a separate measurement transmitter with a 0.2-I.0-bar (3-15-psi pneumatic output, or (2) be sensed directly by the controller, which contains the measurement sensor within its enclosure. Controllers with integral sensing elements are available that sense pressure, differential pressure, temperature, and level. Some controller designs have the set point adjustment knob in the controller, making set point adjustment a local and manual operation. Other types receive a set point from a remotely located pneumatic source, such as a manual air set regulator or another controller, to achieve set point adjustment. There are versions of the pneumatic controller that support the useful one-, two-, and three-mode combinations of proportional, integral, and derivative actions. Other options include auto/manual transfer stations, antireset windup circuitry, on/off control, and process-variable and set point indicators. [Pg.776]

On-Hne Procedures The growing trend toward automation in industry has resiilted in many studies of rapid procedures for generating size information so that feedback loops can be instituted as an integral part of a process. Many of these techniques are modifications of more traditional methods. The problems associated with on-line methods include allocation and preparation of a representative sample analysis of the sample evaluation of the results. The interface between the measuring apparatus and the process has the potential of high complexity, and consequently, high costs [Leschonsld, Paiticle Cha racterization, 1, 1 (July 1984)]. [Pg.1828]

In the foregoing treatments of pressure feedback, the simulation volume retains its cubic form, so changes consist of uniform contractions and expansions. The method is readily extended to the case of a simulation region in which the lengths and directions of the edges are allowed to vary independently. Parrinello and Rahman [31] and Nose and Klein [32] extended the Andersen method to the case of noncubic simulation cells and derived a new Lagrangian for the extended system. Though their equations of motion are... [Pg.61]

The last arrangement of voltage feedbaek is the isolated feedback. This is used when the input voltage is eonsidered lethal to the operator of the equipment (>42.5 VDC). The two aeeepted methods of eleetrieal isolation are optical (optoisolator) or magnetic (transformer). This seetion will talk about the more eommon method of isolation, when an optoisolator is used to isolate the lethal portions of the eireuit from the operator portion. The optoisolator s Ct (eurrent transfer ratio (or drifts with temperature, ean degrade slightly with age,... [Pg.78]

Figure 3-53 Methods of overriding the voltage feedback loop in the event of its failure (a) overvoltage override circuit (when voltage loop goes open-circuited) (b) multiple-output overvoltage override circuit. Figure 3-53 Methods of overriding the voltage feedback loop in the event of its failure (a) overvoltage override circuit (when voltage loop goes open-circuited) (b) multiple-output overvoltage override circuit.
The voltage feedback loop must be isolated from the primary to the secondary. I am choosing an optoisolated method. The voltage feedback circuit will be the arrangement shown in Figure 3-75. [Pg.128]

It may be that in years to come, interatomic potentials can be estimated experimentally by the use of the atomic force microscope (Section 6.2.3). A first step in this direction has been taken by Jarvis et al. (1996), who used a force feedback loop in an AFM to prevent sudden springback when the probing silicon tip approaches the silicon specimen. The authors claim that their method means that force-distance spectroscopy of specific sites is possible - mechanical characterisation of the potentials of specific chemical bonds . [Pg.473]

Develop methods to measure the effectiveness of inherent safety efforts and to provide feedback to personnel to improve performance. [Pg.112]

Cycles and feedback loops are analyzed by graphical methods. [Pg.123]

Direct reading A sampling approach that provides immediate or very fast feedback such as a meter or colorimetric method. [Pg.1429]

Another method of identifying the controls needed is to describe the result-producing processes in flow diagram format. This will enable you to identify where the verification stages need to be added and the feedback loops inserted ... [Pg.190]

The major mechanism of a vapor cloud explosion, the feedback in the interaction of combustion, flow, and turbulence, can be readily found in this mathematical model. The combustion rate, which is primarily determined by the turbulence properties, is a source term in the conservation equation for the fuel-mass fraction. The attendant energy release results in a distribution of internal energy which is described by the equation for conservation of energy. This internal energy distribution is translated into a pressure field which drives the flow field through momentum equations. The flow field acts as source term in the turbulence model, which results in a turbulent-flow structure. Finally, the turbulence properties, together with the composition, determine the rate of combustion. This completes the circle, the feedback in the process of turbulent, premixed combustion in gas explosions. The set of equations has been solved with various numerical methods e.g., SIMPLE (Patankar 1980) SOLA-ICE (Cloutman et al. 1976). [Pg.111]

Regardless of the method(s) you select, it s important to get feedback from the full spectrum of people affected by the pilot. No matter how "tuned in" fadlity managers maybe, they may lack the day-to-day perspective you need... [Pg.153]


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See also in sourсe #XX -- [ Pg.93 ]




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