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Approaching hybrid wind-diesel systems and controller area network

机译:接近混合式风力 - 柴油系统和控制器区域网络

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High wind penetration hybrid wind-diesel systems have complex control requirements. The random nature of the wind, the cubic velocity to power relationship and the fast response of wind turbines make control goals like maintain system stability, and prescribed power quality levels, not easy to achieve. This paper deals with how to implement a distributed control system based on the controller area network (CAN) in hybrid wind diesel systems with high wind penetration. Firstly some introduction to hybrid wind-diesel systems is presented. Secondly two architectures for such hybrid systems are presented and studied mainly from the control point of view. This study concludes with a need of a distributed control, and the definition of some sensor and actuator nodes in the system. The CAN bus is used to close one of the several regulation loops presented. Some considerations about real time distributed control like clock synchronization among nodes when using CAN bus are presented. Finally some advantages of using CAN with such hybrid systems are outlined.
机译:高风渗透混合风柴油系统具有复杂的控制要求。风的随机性,立方体速度与风力涡轮机的快速响应使得控制目标如保持系统稳定性,并规定的电能质量水平,不易实现。本文涉及如何基于具有高风渗透的混合风柴油系统中的控制器区域网络(CAN)来实现分布式控制系统。首先,提出了一些混合风柴油系统的介绍。其次,呈现了这种混合系统的两个架构,并主要从控制的视点进行了研究。本研究得出了需要分布式控制,以及系统中的一些传感器和执行器节点的定义。 CAN总线用于关闭呈现的若干调节环之一。呈现了关于使用CAN总线时节点之间的时钟同步的实时分布式控制的一些考虑因素。最后,概述了使用可以使用这种混合系统的一些优点。

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