(电气工程与自动化专业英语)第6章DC Motor Drives课件.ppt
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1、Add Your Company Slogan(电气工程与自动化专业英语电气工程与自动化专业英语)第第6 6章章DC Motor DrivesDC Motor Drives DC Motor Drives DC Motor Drives2 Study of the d.c.drive is valuable for several reasons:the structure and operation of the d.c.drive are reflected in almost all other drives;the d.c.drive tends to remain the yards
2、tick by which other drives are judged.The first and major part of this chapter is devoted to thyristor-fed(可控硅供电可控硅供电)drives,after which we will look briefly at control arrangements for DC drives.Text A Thyristor DC Drivers3 For motors up to a few kilowatts the armature converter can be supplied fro
3、m either single-phase or three-phase mains,but for larger motors three-phase is always used.A separate thyristor or diode rectifier(二极二极管整流器管整流器)is used to supply the field of the motor:the power is much less than the armature power,so the supply is often single-phase,as shown in Figure 6.1.Text A T
4、hyristor DC Drivers4 The main power circuit consists of a six-thyristor bridge circuit(桥式电桥式电路路),which rectifies the incoming a.c.supply to produce a d.c.supply to the motor armature.The assembly of thyristors,mounted on a heat sink(散热器散热器),is usually referred to as the stack.By altering the firing
5、angle of the thyristors the mean value of the rectified voltage can be varied,thereby allowing the motor speed to be controlled.Text A Thyristor DC Drivers5 The main power circuit consists of a six-thyristor bridge circuit(桥式电桥式电路路),which rectifies the incoming a.c.supply to produce a d.c.supply to
6、the motor armature.The assembly of thyristors,mounted on a heat sink(散热器散热器),is usually referred to as the stack.By altering the firing angle of the thyristors the mean value of the rectified voltage can be varied,thereby allowing the motor speed to be controlled.Text A Thyristor DC Drivers6 Low pow
7、er control circuits are used to monitor the principal variables(主变量主变量)of interest(usually motor current and speed),and to generate appropriate firing pulses so that the motor maintains constant speed despite variations in the load.The speed reference(Figure 6.1)is typically an analogue voltage vary
8、ing from 0 to 10 V,and obtained from a manual speed-setting potentiometer or from elsewhere in the plant.Text A Thyristor DC Drivers7 The combination of power,control,and protective circuits constitutes the converter.Standard modular converters are available as off-the-shelf items in sizes from 0.5
9、kW up to several hundred kW,while larger drives will be tailored to individual requirements.Individual converters may be mounted in enclosures with isolators,fuses etc.,or groups of converters may be mounted together to form a multi-motor drive.Text A Thyristor DC Drivers1 82Outline3 45 9 The basic
10、operation of the rectifying bridge has been discussed,and we now turn to the matter of how the d.c.motor behaves when supplied with d.c.from a controlled rectifier.Basic IntroductionBy no stretch of imagination could the waveforms of armature voltage be thought of as good d.c.,and it would not be un
11、reasonable to question the wisdom of feeding such an unpleasant looking waveform to a d.c.motor.10 Firstly,the armature inductance of the motor causes the waveform of armature current to be much smoother than the waveform of armature voltage,which in turn means that the torque ripple is much less th
12、an might have been feared.Basic Introduction In fact it turns out that the motor works almost as well as it would if fed with pure d.c.,for two main reasons.Secondly,the inertia of the armature is sufficiently large for the speed to remain almost steady despite the torque ripple.Text A Thyristor DC
13、Drivers1 112Outline3 45 12 1For the sake of simplicity we will look at operation from a single-phase(2-pulse)converter,but similar conclusions apply to the 6-pulse converter.The voltage(Va)applied to the motor armature is typically as shown in Figure 6.2(a):it consists of rectified chunks of the inc
14、oming mains voltage,the precise shape and average value(平均值平均值)depending on the firing angle(触发角触发角).armature current13 1The voltage waveform can be considered to consist of a mean d.c.level(Vdc),and a superimposed pulsating or ripple component which we can denote loosely as Vac.The mean voltage can
15、 be altered by varying the firing angle,which also incidentally alters the ripple(i.e.Vac).armature current14 2The ripple voltage(纹波电压纹波电压)causes a ripple current to flow in the armature,but because of the armature inductance,the amplitude of the ripple current is small.In other words,the armature p
16、resents a high impedance to a.c.voltages.This smoothing effect of the armature inductance is shown in Figure 6.2(b),Armature voltage15 2It can be seen that the current ripple is relatively small in comparison with the corresponding voltage ripple.The average value of the ripple current is of course
17、zero,so it has no effect on the average torque of the motor.There is nevertheless a variation in torque every half-cycle of the mains,but because it is of small amplitude and high frequency the variation in speed)will not usually be noticeable.Armature voltage16 3The current at the end of each pulse
18、 is the same as at the beginning,so it follows that the average voltage across the armature inductance(L)is zero.We can therefore equate the average applied voltage to the sum of the back e.m.f.(assumed pure d.c.because we are ignoring speed fluctuations)and the average voltage across the armature r
19、esistance,to yield:Basic IntroductionIt underlines the fact that we can control the mean motor voltage,and hence the speed,simply by varying the converter delay angle.17 3The smoothing effect of the armature(电枢电枢)inductance is important in achieving successful motor operation:the armature acts as a
20、low-pass filter,blocking most of the ripple,and leading to a more or less constant armature current.Basic IntroductionFor the smoothing to be effective,the armature time-constant needs to be long compared with the pulse duration(half a cycle with a 2-pulse drive,but only one sixth of a cycle in a 6-
21、pulse drive).This condition is met in all 6-pulse drives,and in many 2-pulse ones.18 3The no-load speed is determined by the applied voltage(which depends on the firing angle of the converter);there is a small drop in speed with load and as we have previously noted,the average current is determined
22、by the load.Basic IntroductionWe should note that the current ripple(纹波)(纹波)remains the same only the average current changes with load.The speed is determined by the converter firing angle,which represents a very satisfactory state because we can control the firing angle by low-power control circui
23、ts and thereby regulate the speed of the drive.19 3Basic IntroductionThe current waveforms in Figure 6.2(b)are referred to as continuous,because there is never any time during which the current is not flowing.This continuous current condition is the norm in most drives,and it is highly desirable bec
24、ause it is only under continuous current conditions that the average voltage from the converter is determined solely by the firing angle,and is independent of the load current.Text A Thyristor DC Drivers1 202Outline3 45 21 1We can see from Figure 6.2 that as the load torque is reduced,there will com
25、e a point where the minima of the current ripple touches the zero-current line,i.e.the current reaches the boundary between continuous and discontinuous current.The load at which this occurs will also depend on the armature inductance,because the higher the inductance the smoother the current(i.e.th
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