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Network Capacity Assessment of Combined Heat and Power-Based Distributed Generation in Urban Energy Infrastructures

机译:城市能源基础设施热电联产分布式发电的网络容量评估

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摘要

The growing penetration of distributed generation (DG) and use of combined heat and power (CHP) techniques have made electrical distribution systems and water distribution systems increasingly interdependent. This paper proposes an integrated dispatch model that offers a generalized means for determining the potential accommodated DG capacity along with appropriate DG sitting for given urban electricity and water system configurations. The AC optimal power flow (ACOPF)-based system model was developed for each phase of a modified electrical distribution test feeder. A corresponding water distribution system was then designed with its mathematical model developed. A mathematical model of the CHP-based DG system was also developed to couple the electricity and water systems. Results indicate the optimal DG capacity and its optimal sitting based on urban electricity and water infrastructures. The present water network cannot support the complete recovery of the exhaust heat. The mutual impacts on operational performances of CHP-based DG units and urban energy infrastructures were also investigated.
机译:分布式发电(DG)的不断普及和热电联产(CHP)技术的使用已使配电系统和供水系统越来越相互依赖。本文提出了一种综合调度模型,该模型提供了一种通用的方法来确定潜在的可容纳DG容量以及给定城市电力和水系统配置的合适DG位置。针对改进的配电测试馈线的每个阶段,开发了基于交流最优功率流(ACOPF)的系统模型。然后设计相应的水分配系统,并开发其数学模型。还开发了基于CHP的DG系统的数学模型来耦合电和水系统。结果表明,基于城市电力和水基础设施的最佳DG容量及其最佳位置。当前的水网络无法支持废热的完全回收。还研究了热电联产DG机组和城市能源基础设施对运营绩效的相互影响。

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