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Pendulation control system with active rider block tagline system for shipboard cranes

机译:带有主动滑行标语系统的船上起重机摆线控制系统

摘要

The inventive control system, as typically embodied, includes sensing mechanisms, a computational processing unit, and an algorithm for processing inputs and generating outputs to control a rotating pedestal crane equipped with a Rider Block Tagline System (RBTS). Typical inventive embodiments uniquely feature a processing algorithm that distributes various control modes that operate not only through the crane's hoisting, luffing, and slewing mechanisms but also through the crane's RBTS; the inventive algorithm thereby effectuates motion compensation and pendulation damping with respect to the crane. This algorithmic allocation of control represents a more efficient crane anti-pendulation methodology than conventional methodologies; in particular, the inventive methodology exerts significantly greater control of the payload while exacting significantly less burden upon the hoisting, luffing, and slewing mechanisms of the crane.
机译:如通常体现的,本发明的控制系统包括感测机构,计算处理单元以及用于处理输入并产生输出以控制配备有骑乘者标语系统(RBTS)的旋转式基座起重机的算法。典型的发明实施例的独特之处在于一种处理算法,该算法分配各种控制模式,这些控制模式不仅通过起重机的提升,变幅和回转机构运行,而且通过起重机的RBTS进行运行。因此,本发明的算法实现了相对于起重机的运动补偿和摆动阻尼。与传统方法相比,这种算法上的控制分配代表了更有效的起重机防摆姿势方法。特别地,本发明的方法对负载进行了更大的控制,同时大大减轻了起重机的提升,变幅和回转机构的负担。

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