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DEVELOPMENT OF AN OPTIMIZATION FRAMEWORK FOR MICRO-GRID ENERGY CONVERSION SYSTEMS

机译:微电网能量转换系统的优化框架的开发

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A comprehensive optimization study considering both system configurations and control strategies is needed for micro-grid energy systems. In order to address this need, this study provides an advanced optimization framework that extends existing energy system optimization studies in following four aspects: complete system optimization from scratch; comprehensive energy conversion equipment modeling for heating, cooling and power generations; modeling of cascaded configurations such as a cascaded absorption-compression refrigeration system and a cascaded organic Rankine cycle-direct heating system; and consideration of transient loads and weather profiles. The optimization framework aims to find optimum system configurations and control strategies for any given equipment options, and load- and weather-profiles in order to minimize life cycle cost. First, correlation based equipment models and cascaded system models were developed. Then the optimization framework was established using a genetic algorithm solver built in Matlab. The framework was presented through a case study on an oceanic container transportation application under transient loads and weather profiles. It was found that the optimized system was able to reduce life cycle cost by 40%. The optimized system is in favor of cascaded organic Exploring waste heat from the main engine that is used for main propulsion is the key to reduce life cycle cost. The developed optimization framework can be used for any applications as an efficient tool to search for novel energy system designs and their evaluations.
机译:考虑到系统配置和控制策略的全面优化研究是对微网能量系统所需的。为了解决这种需求,本研究提供了一种先进的优化框架,在以下四个方面扩展了现有的能量系统优化研究:从头开始完成系统优化;用于加热,冷却和电力的综合能量转换设备建模;级联配置建模,如级联吸收压缩制冷系统和级联的有机朗肯循环直接加热系统;并考虑瞬态负载和天气配置文件。优化框架旨在为任何给定的设备选项找到最佳的系统配置和控制策略,以及负载和天气配置文件,以最大限度地降低生命周期成本。首先,开发了基于相关的设备模型和级联系统模型。然后使用Matlab中构建的遗传算法求解器建立优化框架。通过瞬态负荷和天气型材下的海洋集装箱运输应用案例研究介绍了该框架。有发现优化的系统能够将生命周期降低40%。优化的系统有利于级联有机探索来自用于主要推进的主发动机的垃圾热量是降低生命周期成本的关键。开发的优化框架可用于任何应用程序作为搜索新型能源系统设计及其评估的有效工具。

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