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Power System Smart Control and Verification

机译:电力系统智能控制与验证

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摘要

Power system control faces new challenges as the demand on the power grid increases. The demands are met by emergency/standby generation during short term peak loads or blackouts/failure. Smarter automated control responds within a reasonably fast duration to such faulty transients. Automation reduces human intervention but strongly emphasizes the need for a formal modeling paradigm which supports verification of the design. We propose modeling the power system and its control as hybrid system modules. The hybrid model supports verification of the design using formal methods like temporal logics to prove correctness of the design. The verification involves traversing the states of the system as it evolves to verify the correctness of the specification. We illustrate our method on a relay-circuit breaker model and then on automated distributed generation.
机译:随着对电网的需求增加,电力系统控制面临新的挑战。短期峰值负载或停电/故障期间的紧急情况/备用情况可以满足需求。更智能的自动化控制可在合理的持续时间内对此类故障瞬态做出响应。自动化减少了人为干预,但强烈强调需要支持设计验证的正式建模范例。我们建议将电力系统及其控制建模为混合系统模块。混合模型支持使用诸如时间逻辑之类的形式方法来验证设计,以证明设计的正确性。验证涉及遍历系统的状态,以验证规范的正确性。我们在继电器断路器模型上然后在自动分布式发电中说明我们的方法。

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