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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Homeostatic control, smart metering and efficient energy supply and consumption criteria: A means to building more sustainable hybrid micro-generation systems
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Homeostatic control, smart metering and efficient energy supply and consumption criteria: A means to building more sustainable hybrid micro-generation systems

机译:稳态控制,智能计量和有效的能源供应和消耗标准:构建更具可持续性的混合微型发电系统的一种手段

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摘要

This paper presents an innovative approach for the understanding and control of grid-connected hybrid micro-generation systems (HMS) without energy storage, to supply electricity to a group of homes designated as 'Sustainable block'. The initiative is based on an effort to integrate non-conventional renewable energies (NCRE) through distributed generation (DG) projects intended for remote and rural communities in Chile and South America, where electricity supply is both expensive and often times unreliable. This may be due to equipment malfunction, line faults and/or harsh climatic conditions or other natural phenomena like earthquakes, all of which can undermine the electric power distribution networks. Here a systems thinking (ST) and cybernetics approach is employed which looks at grid-connected microgrids supplying power to local loads as intrinsically dynamic, complex adaptive systems (CAS). Moreover, such systems can be viewed and approached as a complex sociotechnical system, wherein the energy users ought to play a crucial role as "active loads' within the sustainable block to which the grid-tie microgrid is coupled. Building upon this theoretical framework, a set of coordination and supervisory control strategies for renewable microgrids is presented based on homeostatic control (HC) principles introduced by Schweppe et al. Homeostatic control of power systems. In: Fourth energy monitoring and control system conference. Norfolk, VA: November; 1979. The approach is intended to study and eventually develop new forms of sustainable renewable energy technologies (RETs) for DG of electricity and heat, working in parallel with the grid and offering new choices and benefits to energy users everywhere. A concrete theoretical model is proposed and the algorithms depicting the strategies are explained and compared through simulation analysis. Unlike what is available in the literature on sustainability, and looking at what is missing in regards to HMS as sustainable energy systems (SES), this paper offers an entirely new and significant perspective in terms of design and operation of such systems. First the concepts of sustainability and SES applied to HMS are explored, finding that the large majority of the mainstream analysis reviewed on the subject is focused on socio-economic, environmental, and regulatory issues rather than on the systemic, technical and operational aspects of such systems, as this paper does, and how HC, energy efficiency (EE), and a novel approach to energy supply and consumption equilibrium based on homeostasis can help build more sustainable HMS. Results are presented which confirm the hypotheses underlying the strategies employed and the model predictability, showing that SES are indeed possible and feasible. Discussion and recommendations are also offered stressing the fact that sustainability is essentially a systemic property and operational in nature, rather than explained by exogenous factors.
机译:本文提出了一种创新的方法,用于了解和控制没有储能的并网混合微型发电系统(HMS),从而为一组称为“可持续性住宅区”的房屋供电。该计划基于通过旨在为智利和南美的偏远和农村社区供电的分布式发电(DG)项目整合非常规可再生能源(NCRE)的努力,那里的电力供应既昂贵又往往不可靠。这可能是由于设备故障,线路故障和/或恶劣的气候条件或其他自然现象(例如地震)造成的,所有这些都可能破坏配电网络。在这里,采用了系统思维(ST)和控制论方法,该方法将并网供电的微电网视为本质上动态的复杂自适应系统(CAS),向局部负载供电。此外,可以将此类系统视为复杂的社会技术系统,其中能源用户应在与网格并网的微电网耦合的可持续区块内扮演“主动负载”的关键角色。基于Schweppe等人介绍的稳态控制(HC)原理,提出了一套可再生微电网的协调和监督控制策略,电力系统的稳态控制,发表于:第四届能源监测与控制系统会议,弗吉尼亚州诺福克,1979年11月;该方法旨在研究并最终开发用于电力和热力DG的新型可持续可再生能源技术(RETs),与电网并行工作,并为各地的能源用户提供新的选择和收益,并提出了一个具体的理论模型通过仿真分析来解释和比较描述策略的算法。关于可持续性,并考虑将HMS作为可持续能源系统(SES)所缺少的内容,本文为此类系统的设计和运行提供了全新的重要视角。首先,探讨了适用于HMS的可持续性和SES的概念,发现对该主题审查的绝大多数主流分析都集中在社会经济,环境和监管问题上,而不是在此类问题的系统,技术和运营方面系统,如本文所述,以及碳氢化合物,能源效率(EE)以及基于动态平衡的新型能源供需平衡方法如何有助于建立更可持续的HMS。提出的结果证实了所采用策略和模型可预测性的假设,表明SES确实是可行和可行的。还提供了讨论和建议,强调了一个事实,即可持续性本质上是系统性属性,并且具有可操作性,而不是由外在因素来解释。

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