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Application of Infra-Free Motherboard (IF~M) in a Decentralized Community for a Customized Real-time Processing Multidirectional Energy Supply Network

机译:红外主板(IF〜M)在分散社区中用于定制实时处理多向能源供应网络的应用

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Decentralized resource management is a promising field as it has the ability to lessen impact on Earth's climate change, assist with renewable technology development, increase equity in the distribution and consumption of resources, decrease vulnerability and enable participation of local people and businesses in the supply of technologies. Alternative energy and water resources are widely researched to provide self-sufficiency in scales of single houses to communities, but are still limited to demographical, technological, economical and social factors, which vary around the globe.rnInfra-Free (IF) is an academic research that seeks a synergy between relevant research fields to promote different decentralization scenarios for combined energy and water technologies with best-performance. The Infra-Free Motherboard (IF~M) is a proposal for a standardized platform, where installed technologies integrate within a household as robotic systems that evolve into a self-aware artificial platform to provide customized resource management. It addresses a multidirectional, real-time processing artificial resource management system that could develop its own skills by close interaction with the environment and the user. The system is enhanced with algorithms and dynamic systems to provide communication between different co-evolving systems that plug-in, adapt, evaluate and finally, customize themselves to dynamically changing environments due to resource availability, local needs, technology readiness and individual choices. The multidirectional real-time processing system further extends into a community application, where intelligent self-learning systems are aware of the amount and availability of resources in the whole network (community) and control the distribution between subsystems (houses) using best performance principles. Finally, this provides a dynamically transforming community that learns, adapts and redesigns itself.rnIn this paper; at first, we introduce the standardized IF~M and modular sub-system architecture. Next, we describe the hardware (platform) and software (self-learning process) architecture for the purpose to realize a customized real-time energy management system in a community of interconnected houses with a special focus on energy equation strategies. Next, we study a scenario to apply IF~M in a small-scale community (100 people) in Masdar in 2012; integrated with a plug-in car concept, CO_2 recycle, evaporative cooling and Stirling engine system. Finally, we analyze the energy equalization potential of IF~M in a computer simulation for a 6-household cluster (25 people).
机译:分散式资源管理是一个有前途的领域,因为它具有减轻对地球气候变化的影响,协助可再生技术发展,增加资源分配和消耗公平性,减少脆弱性以及使当地人民和企业参与供应的能力。技术。广泛研究了替代能源和水资源,以向社区提供单户住房规模的自给自足,但仍限于人口,技术,经济和社会因素,这些因素在全球范围内有所不同。寻求相关研究领域之间协同作用的研究,以促进具有最佳性能的能源和水技术组合的不同分散方案。红外主板(IF〜M)是针对标准化平台的提案,该平台将已安装的技术作为机器人系统集成到家庭中,这些机器人系统演变为可自我感知的人工平台,以提供定制的资源管理。它解决了多方向,实时处理的人工资源管理系统的问题,该系统可以通过与环境和用户的紧密交互来开发自己的技能。该系统通过算法和动态系统进行了增强,可以在不同的协同发展系统之间进行通信,这些系统可以根据资源可用性,本地需求,技术就绪程度和个人选择来插入,调整,评估并最终针对动态变化的环境进行自定义。多方向实时处理系统进一步扩展到社区应用程序,在该应用程序中,智能自学习系统了解整个网络(社区)中资源的数量和可用性,并使用最佳性能原理控制子系统(房屋)之间的分配。最后,这提供了一个动态转变的社区,可以自我学习,适应和重新设计。首先,我们介绍标准化的IF〜M和模块化子系统体系结构。接下来,我们描述硬件(平台)和软件(自学习过程)体系结构,以期在互连房屋社区中实现定制的实时能源管理系统,并特别关注能源方程策略。接下来,我们研究了2012年在Masdar的一个小型社区(100人)中应用IF〜M的方案;与插电式概念车,CO_2再循环,蒸发冷却和斯特林发动机系统集成在一起。最后,在计算机模拟的6户家庭(25人)中,我们分析了IF〜M的能量均衡潜力。

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