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Value of Point-of-Load Voltage Control for Enhanced Frequency Response in Future GB Power System

机译:增强频率响应增强频率响应的负载电压控制的值

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摘要

The need for Enhanced Frequency Response (EFR) is expected to increase significantly in future low-carbon Great Britain (GB) power system. One way to provide EFR is to use power electronic compensators (PECs) for point-of-load voltage control (PVC) to exploit the voltage dependence of loads. This paper investigates the techno-economic feasibility of such technology in future GB power system by quantifying the total EFR obtainable through deploying PVC in the urban domestic sector, the investment cost of the installment and the economic and environmental benefits of using PVC. The quantification is based on a stochastic domestic demand model and generic medium and low-voltage distribution networks for the urban areas of GB and a stochastic unit commitment (SUC) model with constraints for secure post-fault frequency evolution is used for the value assessment. Two future energy scenarios in the backdrop of 2030 with ‘smart’ and ‘non-smart’ control of electric vehicles and heat pumps, under different levels of penetration of battery energy storage system (BESS) are considered to assess the value of PEC, as well as the associated payback period. It is demonstrated that PVC could effectively complement BESS towards EFR provision in future GB power system.
机译:在未来的低碳英国(GB)电力系统中,预计对增强频率响应(EFR)的需求将显着增加。提供EFR的一种方法是使用电力电子补偿器(PEC)进行负载点电压控制(PVC),以利用负载的电压依赖性。本文通过在城市国内部门部署PVC,分期产的投资成本和使用PVC的经济和环境益处,调查未来GB电力系统中这种技术的技术经济可行性。量化基于用于GB的城市地区的随机国内需求模型和通用介质和低压分配网络,随机单位承诺(SUC)模型,具有安全后频率演化的限制用于值评估。在电动车辆和热泵的“智能”和热泵的“智能”和“非智能”控制中,在电池储能系统(BESS)的不同水平下,两个未来的能源情景被认为是评估PEC的价值,如以及相关的投资回收期。据证明,PVC可以在未来GB电力系统中有效地补充BESS迈出EFR规定。

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