首页> 外文期刊>Mechatronics: The Science of Intelligent Machines >Adaptive minimum energy cognitive lighting control: Integer order vs fractional order strategies in sliding mode based extremum seeking
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Adaptive minimum energy cognitive lighting control: Integer order vs fractional order strategies in sliding mode based extremum seeking

机译:自适应最小能量认知照明控制:基于滑模的极值搜索的整数阶与分数阶策略

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摘要

To achieve comfortable illumination while minimizing the energy consumption in hybrid lighting, a minimum energy point tracking algorithm is developed to achieve the minimized energy usage despite of environmental variations in this paper. A hardware-in-the-loop prototype of an adaptive minimum energy cognitive lighting control is proposed, designed and built. A sliding mode based extremum seeking controller (SM-ESC) including integer order (10) and fractional-order (FO) strategies is firstly employed to minimize energy usage in the lights, while a PID controller is applied to maintain a light level. The performance of the designed controller is compared with both fractional order and integer order controllers which are designed based the proposed lighting system. The hardware-in-the-loop experimental results are presented to demonstrate the practicality and effectiveness of the proposed cognitive lighting control scheme.
机译:为了在最小化混合照明中的能耗的同时实现舒适的照明,本文开发了一种最小能量点跟踪算法,以实现最小的能量使用,尽管本文存在环境变化。提出,设计和构建了自适应最小能量认知照明控制的半实物原型。首先采用包括整数阶(10)和分数阶(FO)策略的基于滑模的极值搜寻控制器(SM-ESC),以最小化照明中的能量使用,同时应用PID控制器来维持照明水平。将设计的控制器的性能与分数阶和整数阶控制器进行比较,分数阶和整数阶控制器均基于所提出的照明系统进行设计。提出了在环硬件实验结果,以证明所提出的认知照明控制方案的实用性和有效性。

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