外文翻译--控制移动液压起重机
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1、 翻译部分 英文原文 CONTROL OF MOBILE HYDRAULIC CRANES Marc E. MNZER Aalborg University Institute of Energy Technology, Pontoppidanstrde 101 DK-9220 Aalborg, Denmark The goal of the thesis described in this paper is to improve the control of mobile hydraulic cranes. The thesis is split into five parts: a req
2、uirements analysis, an analysis of the current systems and their problems, an analysis of different possibilities for system topologies, development of a new control system for the near future based on electro-hydraulic separate meter in / separate meter out valves, and finally an analysis of more a
3、dvanced and complex solutions which can be applied in the more distant future. The work of the thesis will be done in coop-eration with industry so the thesis will have more of an industrial focus than a purely theoretical focus. Key words: Mobile Hydraulic Cranes, Control Strategies, Separate Meter
4、-in/Separate Meter-out. 1 INTRODUCTION The goal of the thesis described in this paper is to improve the control of mobile hydraulic cranes. A mobile hydraulic crane can be thought of as a large flexible mechanical structure which is moved by some sort of control system. The control system takes its
5、input from a human operator and translates this command into the motion of actuators which move the mechanical structure. The definition of this control system is purposely left vague in order not to impose any con-straints on its design. The control system consists of actuators which move the mecha
6、nical structure, a means of controlling the actuators, a means of supplying power to the actuators,and a way of accepting inputs from the operator. It is this control system which is the target of this thesis. The goal is to analyze the requirements made on the control system and present guidelines
7、for the design of new control systems. The thesis will be split into five parts: 1.Analysis of the requirements of the control system, from the perspective of the opera-tor, the mechanical system, efficiency, stability, and safety requirements. 2.Analysis of current control systems and what their pr
8、oblems are. 3.Analysis of the different options for the control system: different types of actuators,different types of control strategies, and different ways of organizing components. 4.Presentation of a new type of control system, which is commercially implementable. A system that will meet the ne
9、eds of industry in the near future. 5.Analysis of more optimized systems, with higher performance, better efficiency, more flexible control, etc. This will be less commercially applicable but will be a starting point for more research. 2 SECTIONS OF THE THESIS 2.1Requirements Analysis of the Control
10、 System Before starting detailed work on developing new control systems, it is important to analyze what the exact demands are on the control system. The control system is influenced by many factors. For example: the mechanical structure it is controlling, the human operator, effi- ciency, stability
11、, and industry regulations. Industry regulations are the first requirements that have to be addressed. Things like hose rupture protection and runaway load protection make a lot of demands on the control system.After regulations, stability is the next most important requirement; without stability th
12、e con-trol system cant be used. Once stability has been assured, the performance requirements of the control system have to be set. They are determined by the mechanical structure of the crane and the human operator. The mechanical structure of a mobile hydraulic crane is a very large flexible struc
13、ture which has very low natural frequencies. To prevent oscillations it is necessary to keep the speed of the control system below this natural frequency or to develop a control system which can increase this frequency. The human operator also imposes limits on the control system. If the control sys
14、tem is too slow or too fast then it is impossible for a human operator to give it proper inputs. And finally, once the regulations have been met, sta-bility is assured, and the performance is at the right level, the power efficiency of the control system has to be optimized. 2.2Analysis of Current C
15、ontrol Systems Before designing a new control system it is good to analyze the current control systems to find out what their problems are. Current control systems are mainly hydraulic and can suffer from three main problems: 1.Instability 2.High cost 3.Inefficiency 2.2.1Instability Instability is a
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