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Titlebook: System Modelling and Optimization; Proceedings of the 1 Masao Iri,Keiji Yajima Conference proceedings 1988 Springer-Verlag London 1988 Sess

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Distributed nonlinear optimization algorithms for general network problems,ds, etc. Both design and planning of these networks involve optimization problems. The first part of this paper introduces the common characteristics of a nonlinear network (the network may be linear, the objective function may be non linear, or both may be nonlinear). The second part develops a mat
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Solving slp recourse problems: The case of stochastic technology matrix, RHS & objective,by applying Jensen‘s and (generalized) Edmundson-Madansky‘s inequality — having been first outlined in [13]. Monotonicity and convergence will be proved. In the final part, computational aspects will be discussed, followed by application of the new approach to a small stochastic LP for illustration.
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Optimum state estimation using a new class of robust doubly optimized recursive estimators, favourable performances in cases of decreased levels of input observation noise, comparad with those which we adopted during estimator design. Furthermore, it can be seen that the DOPTIR estimator shows significantly greater robustness to the finite accuracy of the coefficients than the standard recursive estimator.
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Modelling support system for system dynamics,ams for large-scale systems, the proposed system needs some heuristic rules to avoid the problem of infinite number of path combinations..Future work planned includes the development of more sophisticated knowledge acquisition mechanism by means of hierarchical conceptual classification and conceptu
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Distributed nonlinear optimization algorithms for general network problems,solve the problem with the help of a distributed computer system. Algorithms for parallel processors and spatially distributed systems have been described..There are a number of common features that pertain to networks. A network consists of a set of nodes and arcs. In addition at every node, there
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