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基于力/速度控制方法的掰手机器人设计 被引量:1
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作者 陈峰 余永 葛运建 《哈尔滨工业大学学报》 EI CAS CSCD 北大核心 2009年第12期266-269,共4页
采用力/速度控制方法,完成了掰手机器人在与人实际掰手腕过程中的拟人化控制任务.根据物体接触后能产生力的特性,分析确立外力和由这些外力所引起的变位量之间的关系,利用质量-弹簧-粘性系统参考模型建立了力与速度的动态关系表达式,在... 采用力/速度控制方法,完成了掰手机器人在与人实际掰手腕过程中的拟人化控制任务.根据物体接触后能产生力的特性,分析确立外力和由这些外力所引起的变位量之间的关系,利用质量-弹簧-粘性系统参考模型建立了力与速度的动态关系表达式,在整个过程中,根据所测得的力信息及速度信息实时调整伺服电机的旋转方向及旋转速度,系统有较强的自适应性.并且,测试者可通过选择适合于自身情况的测试等级,使比赛更富有意义.测试结果显示了方法的有效性. 展开更多
关键词 娱乐机器人 力/速度控制 质量-弹簧-粘性系统模型
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Numerical Simulation on a Throttle Governing System with Hydraulic Butterfly Valves in a Marine Environment 被引量:2
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作者 万会雄 方俊 黄辉 《Journal of Marine Science and Application》 2010年第4期403-409,共7页
Hydraulic butterfly valves have been widely applied in marine engineering because of their large switching torque, low pressure loss and suitability for large and medium diameter pipelines. Due to control problems res... Hydraulic butterfly valves have been widely applied in marine engineering because of their large switching torque, low pressure loss and suitability for large and medium diameter pipelines. Due to control problems resulting from switching angular speeds of the hydraulic butterfly valve, a throttle-governing control mode has been widely adopted, and detailed analysis has been carried out worldwide on the structural principle concerning speed-regulation and the load torque on the shaft while opening or closing a hydraulic butterfly valve. However relevant reports have yet been published on the change law, the error and the influencing factors of the rotational angular velocity of the hydraulic butterfly valve while opening and closing. In this article, research was based on some common specifications of a hydraulic butterfly valve with a symmetrical valve flap existing in a marine environment. The throttle governing system supplied by the accumulator to achieve the switching of the hydraulic control valve was adopted, and the mathematical models of the system were established in the actual conditions while the numerical simulations took place. The simulation results and analysis show that the rotational angular velocity and the error of the hydraulic butterfly valve while switching is influenced greatly by the drainage amount of the accumulator, resulting in pressure loss in the pipeline, the temperature of hydraulic medium and the load of the hydraulic butterfly valve. The simulation results and analysis provide a theoretical basis for the choice of the total capacity of the accumulator and pipeline diameters in a throttle governing system with a hydraulic butterfly valve.It also determines the type and specification of the hydraulic butterfly valve and the design of motion parameters of the transported fluid. 展开更多
关键词 hydraulic butterfly valve throttle governing switching angular speed load characteristics numerical simulation
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Research on H_2 speed governor for diesel engine of marine power station
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作者 HUANG Man-lei 《Journal of Marine Science and Application》 2007年第3期51-57,共7页
The frequency stability of a marine power system is determined by the dynamic characteristic of the diesel engine speed regulation system in a marine power station. In order to reduce the effect of load disturbances a... The frequency stability of a marine power system is determined by the dynamic characteristic of the diesel engine speed regulation system in a marine power station. In order to reduce the effect of load disturbances and improve the dynamic precision of a diesel engine speed governor, a controller was designed for a diesel engine speed regulation system using H2 control theory. This transforms the specifications of the system into a standard H2 control problem. Firstly, the mathematical model of a diesel engine speed regulation system using an H2 speed governor is presented. To counter external disturbances and model uncertainty, the design of an H, speed governor rests on the problem of mixed sensitivity. Computer simulation verified that the H2 speed governor improves the dynamic precision of a system and the ability to adapt to load disturbances, thus enhancing the frequency stability of marine power systems. 展开更多
关键词 marine power station diesel engine SPEED overnor H CONTROL
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