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首页> 外文期刊>European transactions on electrical power engineering >Substation demand reduction by CVR enabled intelligent PV inverter control functions in distribution systems
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Substation demand reduction by CVR enabled intelligent PV inverter control functions in distribution systems

机译:CVR的变电站需求通过CVR启用智能PV逆变器控制功能在分配系统中

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摘要

This article proposes a combined scheme to reduce the substation demand with conservation voltage reduction (CVR) alongside intelligent photovoltaic (PV) inverter control functions. CVR maintains the power delivered to the customers in lower service voltage range (120-114)V by not influencing electric devices' performance at the consumer premises. Since most of the loads are voltage-dependent at the consumer side, proper voltage control can obtain substantial demand reduction and energy savings. In the proposed work, CVR is applied to both medium-sized (IEEE-123 node test feeder) and large-sized (IEEE-8500 node test feeder) unbalanced distribution feeders without PV and with intelligent PV inverter. In addition, the transient nature of PV output power is also examined during the movement of the clouds. The smart PV inverter utilizes various control functions (Volt-VAr, Volt-VAr [hysteresis], Volt-Watt, and combi mode) to control the system's active and reactive power. Results reveal that operating CVR with intelligent PV inverter in the hysteresis Volt-VAr mode helps achieve higher substation demand reduction than with only CVR operation. This combination reduces system losses and contributes to energy savings when better voltage regulation is provided. It also helps in maintaining the reliability and efficiency of the distribution network.
机译:本文提出了一种组合方案,以降低智能光伏(PV)逆变器控制功能的保护电压减少(CVR)的变电站需求。 CVR通过在消费者房屋的电气设备不影响电气设备的性能下,将电源维持在较低的服务电压范围(120-114)v。由于大多数负载在消费侧依赖于电压,因此可以获得适当的电压控制可以获得大量的需求减少和节能。在所提出的工作中,CVR应用于中型(IEEE-123节点测试馈线)和大型(IEEE-8500节点测试馈线)不平衡分配馈线,无需PV和智能光伏逆变器。此外,在云的运动期间还检查了PV输出功率的瞬态性质。智能光伏逆变器采用各种控制功能(Volt-VAR,Vol-VAL [磁滞),伏特 - 瓦特和Combi模式)来控制系统的主动和无功功率。结果表明,在滞后电压模式下使用智能光伏逆变器的操作CVR有助于实现比仅CVR操作更高的变电站需求。当提供更好的电压调节时,该组合可降低系统损耗并有助于节能。它还有助于维护分销网络的可靠性和效率。

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