38 resultados para Operation

em Deakin Research Online - Australia


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Non-response to telephone surveys threatens the accuracy of the collected data and leads to increased research costs. This study examines ways in which Australian telephone research providers are combating non-response by managing the issue of respondent co-operation, including the management of the interviewers and of the survey process. The research found that many of these response-rate boosting practices proposed in the literature are not available to Australian telephone researchers, mainly for cost and regulatory reasons.

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In this paper, aiming at describing interrelationships and communication mechanisms among agents based on a multi-agent framework of Railway Intelligent Transportation System (RITS), we construct the model about stations and trains in the system, which is called Agent-Oriented G-Net Train Group Operation Model (AGNTOM). The framework degrades the complexity of computation and makes the distribution of simulation system easy in design. The simulated experiments prove that the model provides an effective approach for dealing with communication problems in the system.

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How to operate database efficiently and unfailingly in agent-based heterogeneous data source environment is becoming a big problem. In this paper, we contribute a framework and develop a couple of agent-oriented matchmakers with logical ring organization structure to match task agents' requests with middleware agents of databases. The middleware agent is a wrapper of a specific database and is run on the same server with the database management system. The matchmaker is of the features of proliferation and self-cancellation according to the sensory input from its environment. The ring-based coordination mechanism of matchmakers is designed. Two kinds of matchmakers, namely, host and duplicate, are designed for improving the scalability and robustness of agent-based system. The middleware agents are improved for satisfying the framework. We demonstrate the potentials of the framework by case study and present theoretical and empirical evidence that our approach is scalable and robust.

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This report is in essence a critique of the Victorian Coastal Management Act 1995 (VCMA), followed by recommendations for improving the Act and its implementation. The author recognises that of course the Coastal Management Act 1995 is far from the sole piece of legislation or element of governance for Victorian coastal planning and management (see Wescott, 1988.1990,1993,1995, Birrell,1994). But the Act is the leading element of Victorian coastal governance and hence an analysis and critique of its operation after ten years, and recommendations for improvements to the Act, should enhance future coastal planning and management.

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Often manufacturing enterprises will maintain high levels of Work In Progress (WIP) to maximise production throughput. Using computer simulation, this thesis investigates a manufacturing facility and identifies an optimal level of WIP. At this optimum throughput is maximised, manufacturing lead times are minimised, and the WIP level is significantly reduced.

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Autonomous or teleoperation of critical tasks in space applications require fault tolerant robotic manipulators. These manipulators are able to maintain their tasks even if a joint fails. If it is presumed that the manipulator is fault tolerant on its trajectory, then the next step is to provide a fault tolerant force at the end-effector of the manipulator. The problem of cooperative fault tolerant force is addressed in this paper within the operation of two manipulators. The cooperative manipulators are used to compensate the force jump which occurs on the force of the end-effector of one manipulator due to a joint failure. To achieve fault tolerant operation, the contribution of the faulty joint for the force of the end-effector of the faulty manipulator is required to be optimally mapped into the torque of the faulty and healthy manipulators. The optimal joint torque reconfigurations of both manipulators for compensating this force jump are illustrated. The proposed frameworks are deployed for two cooperative PUMA560 manipulators. The results of the case studies validate the fault tolerant cooperation strategies.

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Enduring and workable legislative schemes typically include (a) a balanced approach to the rights and duties of all parties under their purview; and (b) consideration of all major consequences that may flow from the codification of underpinning doctrines. This column examines the 1999 amendments to the Guardianship and Administration Act 1986 (Vic) regulating patients’ consent to medical treatment focusing on their application in modern emergency departments. The legislation needs to reconcile the human rights principle that humane and appropriate treatment is a fundamental right of all those who suffer from ill health and disease, with the principle that all patients (including those with impaired, but not totally absent, decisional capacity) have an absolute right to refuse life-saving treatment. Consent and refusal of treatment provisions should be based on the notion of reasonableness, including recognition that the mental and emotional states experienced by physically ill people may, in the short term, adversely affect their decision-making capacity. Unless the consent legislation factors in the realities of modern emergency practice and resources, statutory thresholds for decisional competence, instead of affording protection, may result in much worse outcomes for vulnerable patients.

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Wetland and floodplain ecosystems along many regulated rivers are highly stressed, primarily due to a lack of environmental flows of appropriate magnitude, frequency, duration, and timing to support ecological functions. In the absence of increased environmental flows, the ecological health of river ecosystems can be enhanced by the operation of existing and new flow-control infrastructure (weirs and regulators) to return more natural environmental flow regimes to specific areas. However, determining the optimal investment and operation strategies over time is a complex task due to several factors including the multiple environmental values attached to wetlands, spatial and temporal heterogeneity and dependencies, nonlinearity, and time-dependent decisions. This makes for a very large number of decision variables over a long planning horizon. The focus of this paper is the development of a nonlinear integer programming model that accommodates these complexities. The mathematical objective aims to return the natural flow regime of key components of river ecosystems in terms of flood timing, flood duration, and interflood period. We applied a 2-stage recursive heuristic using tabu search to solve the model and tested it on the entire South Australian River Murray floodplain. We conclude that modern meta-heuristics can be used to solve the very complex nonlinear problems with spatial and temporal dependencies typical of environmental flow allocation in regulated river ecosystems. The model has been used to inform the investment in, and operation of, flow-control infrastructure in the South Australian River Murray.