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Titlebook: Artificial Intelligence Through Search; Christopher James Thornton,Benedict Boulay Book 1992 Springer Science+Business Media Dordrecht 199

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期刊全称Artificial Intelligence Through Search
影响因子2023Christopher James Thornton,Benedict Boulay
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图书封面Titlebook: Artificial Intelligence Through Search;  Christopher James Thornton,Benedict Boulay Book 1992 Springer Science+Business Media Dordrecht 199
影响因子This is an important textbook on artificial intelligence thatuses the unifying thread of search to bring together most of the majortechniques used in symbolic artificial intelligence. The authors,aware of the pitfalls of being too general or too academic, have takena practical approach in that they include program code to illustratetheir ideas. Furthermore, code is offered in both POP-11 and Prolog,thereby giving a dual perspective, highlighting the merits of theselanguages. .Each chapter covers one technique and divides up into threesections:. .a section which introduces thetechnique (and its usual applications) andsuggests how it can beunderstood as a variant/generalisation of search; ..a sectionwhich developed a `low‘-level (POP-11) implementation; ..a sectionwhich develops a high-level (Prolog) implementation of thetechnique... The authors also include useful notes on alternativetreatments to the material, further reading and exercises. .As a practical book it will be welcomed by a wide audience including,those already experienced in AI, students with some background inprogramming who are taking an introductory course in AI, and lecturerslooking for a precise, professional and
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Problem Reduction (AND/OR-tree search),In the previous chapters we have dealt exclusively with different kinds of state-space search. In that representation, there was a starting state, a goal state and intermediate states linked implicitly via a successor function. The general shape of all states was the same. They were distinguished by the values of their internal components.
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Theron Muller,John Adamson,Steven Herderng a sentence or planning a sequence of robot actions. . is one of the central issues in problem-solving systems. It becomes so whenever the system, through lack of knowledge, is faced with a choice from a number of alternatives, where each choice leads to the need to make further choices, and so on
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Addressing Spoken Fluency in the Classroomnal structure and is represented simply by a token. This process is subsumed in the general class of . search and is dealt with more generally in the next chapter. We will use the example of finding a path using a map. It is easy to describe and corresponds fairly closely to the non-technical meanin
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Erik Jon Byker,Matthew A. Witensteinn of a physical environment to find a path from a start node to a goal node. This sort of program obviously has uses for any task which involves route planning (e.g. programming mobile robots). But in fact the program we have constructed has many other possibilities.
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https://doi.org/10.1007/978-3-031-47798-0earch space systematically but with no inkling of where a goal node is likely to be found. Recall that the programs have a “worm’s-eye” rather than a “bird’s-eye” view of the space. They just work through the space, methodically checking out every single possibility. For simple problems (small searc
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School Development in Tough Times, in a two-person game (e.g. chess) just need to decide at any given stage which of the possible moves is the best one. If we have a heuristic function which says how close a given state is to a goal state then the best move can be identified as the one which has the highest value of the heuristic fu
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