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Feasibility Analysis of Converter-Interfaced Combined Heat and Power System

机译:转换器接口组合热电系统的可行性分析

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As a promising new design concept, the converter-interfaced combined heat and power (CHP) system is coupled to the bulk grid through a rectifier and a grid-ready tied inverter. Compared to the traditional directly-coupled CHP system, it removes the requirement for oversizing the CHP generator, limits the short-circuit contribution of the generator and simplifies the grid integration process of CHP system. This paper evaluates the economic benefits of this concept by calculating the annualized Return-on-Investment (ROI) and comparing it to the directly-coupled system. The economic analysis includes timeseries simulations to compute energy transactions with the bulk grid as well as sizing the equipment to calculate the capital and operational costs. Obtained results indicate that in majority of user cases evaluated, the converter-interfaced CHP systems can provide better ROI than directly-coupled systems. Given the additional technical benefits provided by inverter-based distributed energy resources (DERs), the proposed concept is proved to be technically viable and economically feasible.
机译:作为一个有前途的新设计概念,转换器接口的组合热量和功率(CHP)系统通过整流器和网格式连接逆变器耦合到散装网格。与传统的直接耦合CHP系统相比,它消除了超大电池发生器的要求,限制了发电机的短路贡献,并简化了CHP系统的电网集成过程。本文通过计算年度回报投资(ROI)并将其与直接耦合系统进行比较来评估该概念的经济效益。经济分析包括数量模拟,以计算与批量电网的能源交易,以及设备尺寸调整设备以计算资本和运营成本。获得的结果表明,在大多数用户案例中评估,转换器接口的CHP系统可以提供比直接耦合系统更好的ROI。鉴于基于逆变器的分布能源资源(DERS)提供的额外技术效益,所提出的概念被证明在技术上可行和经济上可行。

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