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"拿"贼有办法
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作者 张雨泽 《精武》 2005年第4期18-19,共2页
"百打不如一拿",快速有力的击打虽可使敌受伤,但与之相比,擒拿 的作用是制敌而不伤敌,既可制止暴力,又不触犯法律是公安、武警战士 必须掌握的制暴技术之一。擒拿的原理是利用人体关节弯曲旋转的极限, 以反关节控制敌人,因此... "百打不如一拿",快速有力的击打虽可使敌受伤,但与之相比,擒拿 的作用是制敌而不伤敌,既可制止暴力,又不触犯法律是公安、武警战士 必须掌握的制暴技术之一。擒拿的原理是利用人体关节弯曲旋转的极限, 以反关节控制敌人,因此对运用者的要求更高。其要求是动作自然且突然, 动作间连接迅速,控制关节要牢固。本期为您介绍主动擒拿技术。 展开更多
关键词 擒拿 中国武术 反关节控制 技术要领 提肘别臂
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Angle Control of a Pneumatically Driven Musculoskeletal Model Based on Coordination of Agonist-Antagonist Muscle
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作者 Yuki Honda Fumio Miyazaki Atsushi Nishikawa 《Journal of Mechanics Engineering and Automation》 2012年第12期709-719,共11页
In recent years, researchers have been actively pursuing research into developing robots that can be useful in many fields of industry (e.g., service, medical, and aging care). Such robots must be safe and flexible ... In recent years, researchers have been actively pursuing research into developing robots that can be useful in many fields of industry (e.g., service, medical, and aging care). Such robots must be safe and flexible so that they can coexist with people. Pneumatic actuators are useful for achieving this goal because they are lightweight units with natural compliance. Our research focuses on joint angle control for a pneumatically driven musculoskeletal model. In such a model, we use a one-degree-of-freedom joint model and a five-fingered robot hand as test beds. These models are driven by low pressure-driven pneumatic actuators, and mimic the mechanism of the human hand and musculoskeletal structure, which has an antagonistic muscle pair for each joint. We demonstrated a biologically inspired control method using the parameters antagonistic muscle ratio and antagonistic muscle activity. The concept of the method is based on coordination of an antagonistic muscle pair using these parameters. We have investigated the validity of the proposed method both theoretically and experimentally, developed a feedback control system, and conducted joint angle control by implementing the test beds. 展开更多
关键词 Musculoskeletal model pneumatic actuator position control muscle coordination agonist-antagonist muscle.
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