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Coordinated Control Strategy of Load Virtual Energy Storage System for Improving Stochastic Power Absorption in Distribution Network

机译:负荷虚拟储能系统协调控制策略,用于改善分销网络随机功耗

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The randomness and volatility of stochastic power source such as PV and wind change the voltage, current and supply-demand of distribution network, thus affecting power absorption, safety and stability. This paper presents a new coordinated control strategy of load virtual energy storage system (LVESS), which is capable of improving stochastic power absorption in distribution network. First, the aggregation characteristics of typical temperature control loads (TCLs) which have good energy storage characteristics, such as air conditioners, refrigerators etc are studied and the aggregated power control models are established based on different characteristics. Refer to the state of charged of battery energy storage, the virtual state of charge (VSOC) and adjustable power which are used to describe and tag the regulation ability of LVESS are evaluated considering user comfort, load control signal and operation state. According to the model and VSOC, a two-level optimized coordination control strategy which takes into account both technical indexes of distribution network and user electricity costs is put forward. The strategy is verified to realize power coordination control and resolve the problems brought by stochastic power source.
机译:随机电源的随机性和波动性,如PV和风电源改变了分配网络的电压,电流和供应,从而影响了功率吸收,安全性和稳定性。本文介绍了负载虚拟能量存储系统(LVESS)的新协调控制策略,能够改善分销网络的随机功率吸收。首先,研究了具有良好储能特性的典型温度控制负荷(TCL)的聚集特性,例如空调,冰箱等,并且基于不同的特性建立聚集功率控制模型。参考电池能量存储的充电状态,考虑用户舒适,负载控制信号和操作状态,评估用于描述和标签LVESS调节能力的虚拟电荷(VSOC)和可调电量。根据该模型和VSOC,提出了考虑分销网络和用户电力成本技术索引的两级优化协调控制策略。验证了该策略以实现电力协调控制并解决随机电源带来的问题。

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