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Algorithmic Analysis on Hybrid-Intelligent Deregulated Electricity Market

机译:混合智能解除管制电力市场算法分析

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摘要

Over the last decades, the demand for electricity is increasing due to the growth of population as well as the advancement of technology. This sharp increment in the consumption of electrical energy has kept the required demand unfulfilled and the deregulation of the electricity market has introduced more competition among private players in the electricity industry. This often leads to issues like higher congestion, Price volatility, Voltage limit, Stability limit and so on. Thus, with the intention of overriding these issues, this paper develops a hybrid optimization model referred as Group Search with Gravitational Force (GSGF) model, which is formed by hybridizing the concepts of Group Search Optimization (GSO) as well as Gravitational Search Algorithm (GSA). The unit commitment problem is solved by the proposed model with the consideration of system parameters under a deregulated environment. Further, with appropriate bidding coefficient acj and bcj, this research work designs the bidding model of IEEE 30 and IEEE 75 test bus system. Further, the proposed GSGF model is algorithmically evaluated in terms of Market Clearing Price (MCP), total profit and consumed bidding power, respectively by varying the maximum pursuit distance wimax.
机译:在过去的几十年中,由于人口的增长以及技术进步,对电力的需求正在增加。在电能消耗这一急剧增加一直保持所需的需求未了和电力市场的放松管制已经介绍了电力行业的私人球员之间的竞争。这通常会导致具有更高的拥塞,价格波动,电压限制,稳定性极限等问题。因此,随着覆盖这些问题的意图,该论文开发了作为Grabitational(GSGF)模型的组搜索的混合优化模型,其通过杂交组搜索优化(GSO)的概念以及引力搜索算法( GSA)。通过考虑解除管制环境下的系统参数,通过拟议模型解决了单位承诺问题。此外,通过适当的竞标系数ACJ和BCJ,该研究工作设计了IEEE 30和IEEE 75测试总线系统的竞标模型。此外,通过改变最大追踪距离WiMax,所提出的GSGF模型分别在市场清算价格(MCP),总利润和消费竞标权方面进行算法。

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