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Optimal operation of hybrid power systems including renewable sources in the sugar cane industry

机译:甘蔗行业中包括可再生能源在内的混合动力系统的最佳运行

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This study presents a control structure, based on model predictive control, applied to energy management optimisation in a sugar cane processing plant including renewable sources. The proposed energy plant is set upon a sugar cane processing industry and has to produce and maintain an amount of electric power throughout the year, defined by contract. This plant is, also, bound to produce flows of steam in different pressures, to comply to the demands of the production process of ethanol and sugar, from the sugar cane. The renewable sources in the system include photovoltaic, wind power generation and the use of biomass, from the remains of the sugar cane. The proposed control algorithm has the task of performing the management of which energy system to use (combined heat and power generation systems, boilers or others), maximise the use of renewable energy sources, maximise the gains of the boilers (that vary according to the biomass mixture used), manage the use of energy storages and supply the defined amount of energy. Simulation results show the satisfactory operation of the proposed control structure.
机译:这项研究提出了一种基于模型预测控制的控制结构,该控制结构适用于包括可再生资源在内的甘蔗加工厂的能源管理优化。拟建的能源厂以甘蔗加工业为基础,并且必须按照合同规定,全年生产和维持一定数量的电力。该工厂还必须产生不同压力的蒸汽流,以符合甘蔗生产乙醇和糖的过程要求。该系统中的可再生资源包括光伏,风力发电和使用来自甘蔗残渣的生物质。提出的控制算法的任务是执行对要使用的能源系统(热电联产系统,锅炉或其他能源系统)的管理,最大限度地利用可再生能源,最大化锅炉的收益(具体取决于使用的生物质混合物),管理能量存储的使用并提供定义的能量。仿真结果表明所提出的控制结构具有令人满意的运行效果。

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