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Modelling of a population of Heat Pumps as a Source of load in the Great Britain power system

机译:在英国电力系统中将热泵作为负荷源进行建模

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The developments of large-scale renewable energy cause significant challenges for the operation of power system. Demand Side Response (DSR) based Thermostatically Controlled Loads (TCLs) may offer a broad range of potential benefits on system operation and reliability. This paper investigates the modelling of aggregated small loads, such as Heat Pump (HP). The simplified thermodynamic model of a residential single Air Source Heat Pump (ASHP) was developed and simulated using Matlab. A decentralized temperature control algorithm was used to control the ON/OFF cycle of the heat pump offering comfort to the customer. The behaviour of a population of controlled heat pumps was examined. Seven case studies were conducted to identify a suitable number of individual heat pump models that can be used to represent the total number of heat pumps in the UK according to the National Grid 2030 medium uptake scenario. Simulation results showed that an aggregation model of 5,000 individual heat pumps is suitable to represent the total number of heat pumps in the GB power system.
机译:大规模可再生能源的发展给电力系统的运行带来了重大挑战。基于需求侧响应(DSR)的恒温控制负载(TCL)可能会为系统运行和可靠性带来广泛的潜在好处。本文研究了聚集的小负载的模型,例如热泵(HP)。使用Matlab开发并模拟了住宅单空气源热泵(ASHP)的简化热力学模型。分散温度控制算法用于控制热泵的开/关循环,从而为客户提供舒适感。检查了一组受控热泵的行为。进行了七个案例研究,以确定适当数量的单个热泵模型,这些模型可用于表示根据National Grid 2030介质吸收情况在英国表示的热泵总数。仿真结果表明,由5,000个单独的热泵组成的聚集模型适合于表示GB电力系统中的热泵总数。

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