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Development of real and reactive power allocation methods for deregulated power system

机译:解除电力系统有功和无功分配方法的发展

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摘要

The aim of deregulation in the electric power industry is to optimize the system welfare, by introducing competitive environment, mainly among the suppliers. Developing fair and equitable real and reactive power allocation methodudhas been an active topic of research, particularly in the new paradigm, with many transactions taking place at any time. This thesis suggests two new methodologies toudallocate real and reactive power output of individual generators to system loads and flows. Both allocation procedures presented can be used independently inudderegulated power systems. It is based on current operating point of the system, computed through AC load flow program. The proposed reactive power allocation methodology adopts current tracing, instead of power tracing. Based on solved load flow and the network parameters, the method converts power injections and line flows into real and imaginary current injections and flows. These currents are thenudrepresented independently as real and imaginary current networks. Since current networks are acyclic lossless networks, proportional sharing principle and graphudtheory is used to trace the relationship between current sources and current sinks. From this relationship of current components of individual generators, it is possibleudto find reactive power contribution of each generator. This current tracing method can also be applied for real power allocation, with a few modifications. The secondudmethod is mainly applied for real power allocation. The method first clusters the system into small groups of buses. Then an appropriate conventional power flow tracing procedure is adopted to obtain the contribution factors within each cluster of buses. The choice of the chosen algorithm depends on their limitations andudsuitability. The advantages of the proposed methodologies are demonstrated on commonly used test systems and actual TNB 222 bus system. The proposed methodologies provide better reliability and minimize the limitations of conventional real and reactive power allocation methods.
机译:电力行业放松管制的目的是通过引入竞争环境(主要是在供应商之间)来优化系统福利。发展公平,公正的有功和无功功率分配方法一直是研究的活跃话题,特别是在新范式中,许多交易随时发生。本文提出了两种新方法来将各个发电机的有功和无功输出分配给系统负载和流量。所示的两种分配程序都可以在非电力系统中独立使用。它基于系统的当前工作点,通过交流潮流程序计算得出。提出的无功功率分配方法采用电流跟踪,而不是功率跟踪。该方法基于求解的潮流和网络参数,将功率注入和线路流转换为实,虚电流注入和流。这些电流然后被独立地表示为真实和虚构的电流网络。由于电流网络是非循环的无损网络,因此使用比例共享原理和图形理论来追踪电流源和电流宿之间的关系。从单个发电机的电流分量的这种关系,有可能找到每个发电机的无功功率贡献。经过一些修改,该电流跟踪方法也可以应用于有功功率分配。第二种方法主要用于有功功率分配。该方法首先将系统分为几组总线。然后采用适当的常规潮流跟踪程序来获得每个公交车集群内的贡献因子。所选算法的选择取决于其局限性和适用性。在常用的测试系统和实际的TNB 222总线系统上证明了所提出方法的优势。所提出的方法提供了更好的可靠性,并最小化了常规有功和无功功率分配方法的局限性。

著录项

  • 作者

    Shareef Hussain;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 en
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