首页> 外文会议>Electricity Distribution, 2005. CIRED 2005 >An interuptible load management method with considering voltage stability in a restructured power system: An OPF approach
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An interuptible load management method with considering voltage stability in a restructured power system: An OPF approach

机译:考虑重组电压的电压稳定性的对插式负载管理方法:OPF方法

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A common standpoint shared by nearly all restructured electricity market is designation of a system operator that is responsible for reliable real time control and secure operation of the transmission system. This enables efficient operation of competitive electricity and ancillary services markets. Reactive power and voltage support are among those services should be provided efficiently for preventing occurrence of voltage instability in a power system. Common experiences of power system operation under restructuring environment in different countries, reveal that Independent System Operator (ISO) should pay attention to recognition of power stability margin more precisely than before. In this new era all rivals compete for higher profit margin in trading of electricity as much as possible. This strategy might endanger some parts of power system. Therefore it is vital for ISO to procure different kinds of ancillary services necessary for harness of power system instability. Generally voltage magnitudes at load buses are regulated with injection or absorption of determined amounts of reactive power at voltage control buses where reactive power can be provided by special devices such as generators, fixed capacitors, static VAR compensator and etc. Besides procurement ISO will attempt to use reactive power resources to keep away from voltage instability points such as saddle node Bifurcation (SNB) or Limit Induced Bifurcation (LIB) points as far as possible [1]. Prominent characteristic of reactive power strongly requests that it should be provided locally rather than transferring from long distances. In these areas where reactive power encounters with shortage in resources ISO can take advantage of interruptible loads to overcome the problems. Interruptible loads can be exploited for different purposes, for instance increasing active / reactive power reserves, promoting stability conditions, congestion management and etc in a deregulated power system. The benefits o-f using interruptible loads are debated in [2–4] with all the specifics. [5] Demonstrates the advantage of interruptible loads to increasing active power reserve while [6] investigates the profits gained at using them for improving of introduced static voltage stability index. In this paper appose to [6] we use voltage stability margin index as a main constraints of an OPF based structure proposed for managing interruptible loads in a restructured power system. Other constraints of this optimisation problem consist of limits pertain to magnitudes of bus voltages, magnitudes of transmission line currents and constraints related to resource's limits. The model is then implemented by introducing a new OPF method through Particle Swarm Optimisation algorithm. Case study on the IEEE 14 bus test system is reported to illustrate the proposed method.
机译:几乎所有重组的电力市场所共有的共同观点是指定系统运营商,该运营商负责可靠的实时控制和传输系统的安全运行。这可以使竞争激烈的电力和辅助服务市场高效运行。应有效地提供无功和电压支持,以防止在电力系统中出现电压不稳定性。各国在重组环境下电力系统运行的共同经验表明,独立系统运营商(ISO)应该比以前更加重视对电力稳定裕度的认识。在这个新时代,所有竞争对手都在争夺更高的电力交易利润率。此策略可能会危害电源系统的某些部分。因此,对于ISO而言,获得电力系统不稳定的控制所需的各种辅助服务至关重要。通常,负载总线上的电压幅值是通过在电压控制总线上注入或吸收确定量的无功功率来调节的,在无功功率中,无功功率可以通过特殊设备(例如发电机,固定电容器,静态VAR补偿器等)提供。除采购外,ISO还将尝试使用无功功率资源尽可能远离电压不稳定点,例如鞍形节点分叉(SNB)或极限感应分叉(LIB)点[1]。无功功率的突出特性强烈要求应在本地提供,而不是从远距离转移。在这些无功功率遇到资源短缺的地区,ISO可以利用可中断的负载来克服这些问题。可将可中断负载用于不同目的,例如,在解除管制的电力系统中增加有功/无功功率储备,提高稳定性条件,拥塞管理等。 o-的好处 f [2-4]讨论了使用可中断负载的所有细节。 [5]展示了可中断负载增加有功功率储备的优势,而[6]研究了使用可中断负载来改善引入的静态电压稳定性指标所获得的收益。在本文[6]中,我们将电压稳定裕度指数用作基于OPF的结构的主要约束条件,该结构旨在管理重组电力系统中的可中断负载。此优化问题的其他约束包括与总线电压的大小有关的限制,传输线电流的大小以及与资源限制有关的限制。然后通过采用粒子群优化算法引入一种新的OPF方法来实现该模型。报告了对IEEE 14总线测试系统的案例研究,以说明所提出的方法。

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