对模糊逻辑和模糊控制的介绍设计翻译
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1、模糊控制软启动器设计相关翻译资料 1 INTRODUCTION TO FUZZY LOGIC & FUZZY CONTROL Fuzzy logic has become a common buzzword in machine control. However, the term itself inspires a certain skepticism, sounding equivalent to half-baked logic or bogus logic.Some other nomenclature might have been preferable, but its too l
2、ate now, and fuzzy logic is actually very straightforward.Fuzzy logic is a way of interfacing inherently analog processes, that move through a continuous range of values, to a digital computer, that likes to see things as well-defined discrete numeric values. For example, consider an antilock brakin
3、g system, directed by a microcontroller chip. The microcontroller has to make decisions based on brake temperature, speed, and other variables in the system. The variable temperature in this system can be divided into a range of states, such as: cold, cool, moderate, warm, hot, very hot. Defining th
4、e bounds of these states is a bit tricky. An arbitrary threshold might be set to divide warm from hot, but this would result in a discontinuous change when the input value passed over that threshold. The way around this is to make the states fuzzy, that is, allow them to change gradually from one st
5、ate to the next. You could define the input temperature states using membership functions such as the following: With this scheme, the input variables state no longer jumps abruptly from one state to the next. Instead, as the temperature changes, it loses value in one membership function while gaini
6、ng value in the next. At any one time, the truth value of the brake temperature will almost always be in some degree part of two membership functions: 0.6 nominal and 0.4 warm, or 0.7 nominal and 0.3 cool, and so on. The input variables in a fuzzy control system are in general mapped into by sets of
7、 membership functions similar to this, known as fuzzy sets. The process of converting a crisp input value to a fuzzy value is called fuzzification. A control system may also have various types of switch, or ON-OFF, inputs along with its analog inputs, and such switch inputs of course will always hav
8、e a truth value equal to either 1 or 0, but the scheme can deal with them as simplified fuzzy functions that are either one value or another. Given mappings of input variables into membership functions and truth values, the microcontroller then makes decisions for what action to take based on a set
9、of rules, each of the form: IF brake temperature IS warm AND speed IS not very fast THEN brake pressure IS slightly decreased. In this example, the two input variables are brake temperature and speed that have values defined as fuzzy sets. The output variable, brake pressure, is also defined by a fu
10、zzy set that can have values like static, slightly increased, slightly decreased, and so on. This rule by itself is very puzzling since it looks like it could be used without bothering with fuzzy logic, but remember the decision is based on a set of rules: All the rules that apply are invoked, using
11、 the membership functions and truth values obtained from the inputs, to determine the result of the rule. This result in turn will be mapped into a membership function and truth value controlling the output variable. These results are combined to give a specific (crisp) answer, the actual brake pres
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