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Optimal online operation of residential jxCHP systems using linear programming

机译:使用线性编程优化住宅jxCHP系统的在线运行

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Environmental pressures have resulted in an increased importance being placed on the efficient production and consumption of energy. Micro combined heat and power (μCHP) technology has the potential to make an important contribution to make the transition to more sustainable energy systems since it is a highly efficient technology for generating both electricity and heat from a single fuel source.μ The conventional operation strategies for these technologies are pre-determined and either heat-led or electricity-led. This paper presents an optimal online operation strategy for μCHP systems, which is more efficient than the aforementioned conventional pre-determined operation strategies. A generic optimal online linear programming (LP) optimiser has been developed for operating a (xCHP system. It is generic since it is applicable for any μ-CHP technology or demand profile. This optimiser is capable of minimising the daily operation costs of such a system. Three different simulation scenarios have been investigated: the new feed-in tariff (FIT) scheme; the trade of electricity; the introduction of a carbon tax. In all three investigated scenarios, the results show that the optimiser significantly reduces operation costs when compared to the conventional pre-determined operation strategies. As such, it is suggested that the optimiser has the potential to deliver significant energy savings in practice.
机译:环境压力导致人们越来越重视有效生产和消耗能源。微型热电联产(μCHP)技术有可能为过渡到更可持续的能源系统做出重要贡献,因为它是一种高效的技术,可从单一燃料源产生电和热。μ常规运行策略这些技术是预先确定的,并且以热为主导或以电力为主导。本文提出了一种用于μCHP系统的最佳在线操作策略,该策略比上述常规的预定操作策略更有效。已经开发了用于运行xCHP系统的通用最优在线线性规划(LP)优化器。由于它适用于任何μ-CHP技术或需求曲线,因此具有通用性。系统研究了三种不同的模拟方案:新的上网电价(FIT)方案;电力贸易;征收碳税;在所有三种研究方案中,结果表明,优化器显着降低了运营成本。因此,建议该优化器在实践中具有节省大量能源的潜力。

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