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Power and Energy Communication Services for Control-software Models

机译:控制软件模型的电源和能量通信服务

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Implementing energy-based controllers in software represents a challenge for software engineers, as additional expertise is required to abide by the physics-domain constraints of energy exchange in the design and structure of the control software. Our paper bridges the gap between software engineering and the physics domain by conveying energy exchange to control-software modelling. We use principles of physical systems and the bond -graph modelling language to identify the mechanisms and constraints of energy exchange and represent them as data-communication services for software models. This work resulted in metamodels and models for power and energy communication that can facilitate the first-time-right implementation of robot-control software.
机译:在软件中实现基于能量的控制器代表软件工程师的挑战,因为需要额外的专业知识来遵守控制软件的设计和结构的能量交换的物理结构域限制。 我们的论文通过传达能源交换来控制软件工程和物理领域之间的差距来控制软件建模。 我们使用物理系统的原理和键盘图建模语言来确定能量交换的机制和限制,并表示为软件模型的数据通信服务。 这项工作导致元模型和电源通信模型,可以促进机器人控制软件的首次正确实施。

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