On the implementation of frontier-to-root tree automata in recursive neural networks
نویسندگان
چکیده
In this paper we explore the node complexity of recursive neural network implementations of frontier-to-root tree automata (FRA). Specifically, we show that an FRAO (Mealy version) with m states, l input-output labels, and maximum rank N can be implemented by a recursive neural network with O(radical(log l+log m)lm(N)/log l+N log m) units and four computational layers, i.e., without counting the input layer. A lower bound is derived which is tight when no restrictions are placed on the number of layers. Moreover, we present a construction with three computational layers having node complexity of O((log l + log m)radical lmN) and O((log l + log m) lmN) connections. A construction with two computational layers is given that implements any given FRAO with a node complexity of O(lmN) and O((log l+N log m)lmN) connections. As a corollary we also get a new upper bound for the implementation of finite-state automata (FSA) into recurrent neural networks with three computational layers.
منابع مشابه
DIFFERENT NEURAL NETWORKS AND MODAL TREE METHOD FOR PREDICTING ULTIMATE BEARING CAPACITY OF PILES
The prediction of the ultimate bearing capacity of the pile under axial load is one of the important issues for many researches in the field of geotechnical engineering. In recent years, the use of computational intelligence techniques such as different methods of artificial neural network has been developed in terms of physical and numerical modeling aspects. In this study, a database of 100 p...
متن کاملEncoding Nondeterministic Finite-State Tree Automata in Sigmoid Recursive Neural Networks
Recently, a number of authors have explored the use of recursive recursive neural nets (RNN) for the adaptive processing of trees or tree-like structures. One of the most important language-theoretical formalizations of the processing of tree-structured data is that of finitestate tree automata (FSTA). In many cases, the number of states of a nondeterministic FSTA (NFSTA) recognizing a tree lan...
متن کاملA missing link in root-to-frontier tree pattern matching
Tree pattern matching (tpm) algorithms play an important role in practical applications such as compilers and XML document validation. Many tpm algorithms based on tree automata have appeared in the literature. For reasons of efficiency, these automata are preferably deterministic. Deterministic root-to-frontier tree automata (drftas) are less powerful than nondeterministic ones, and no root-to...
متن کاملA Missing Link in Root-to-Frontier Tree Pattern Mat hing
Abstra t. Tree pattern mat hing (tpm) algorithms play an important role in pra ti al appli ations su h as ompilers and XML do ument validation. Many tpm algorithms based on tree automata have appeared in the literature. For reasons of eÆ ien y, these automata are preferably deterministi . Deterministi root-to-frontier tree automata (drftas) are less powerful than nondeterministi ones, and no ro...
متن کاملSimple Strategies to Encode Tree Automata in Sigmoid Recursive Neural Networks
Recently, a number of authors have explored the use of recursive recursive neural nets (RNN) for the adaptive processing of trees or tree-like structures. One of the most important language-theoretical formalizations of the processing of tree-structured data is that of deterministic finite-state tree automata (DFSTA). DFSTA may easily be realized as RNN using discrete-state units such as the th...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- IEEE transactions on neural networks
دوره 10 6 شماره
صفحات -
تاریخ انتشار 1999