首页> 外文期刊>Journal of The Institution of Engineers (India) >TLBO based Voltage Stable Environment Friendly Economic Dispatch Considering Real and Reactive Power Constraints
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TLBO based Voltage Stable Environment Friendly Economic Dispatch Considering Real and Reactive Power Constraints

机译:考虑有功和无功约束的基于TLBO的电压稳定型环保经济调度

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In view of growing concern towards environment, power system engineers are forced to generate quality green energy. Hence the economic dispatch (ED) aims at the power generation to meet the load demand at minimum fuel cost with environmental and voltage constraints along with essential constraints on real and reactive power. The emission control which reduces the negative impact on environment is achieved by including the additional constraints in ED problem. Presently, the power system mostly operates near its stability limits, therefore with increased demand the system faces voltage problem. The bus voltages are brought within limit in the present work by placement of static var compensator (SVC) at weak bus which is identified from bus participation factor. The optimal size of SVC is determined by univariate search method. This paper presents the use of Teaching Learning based Optimization (TLBO) algorithm for voltage stable environment friendly ED problem with real and reactive power constraints. The computational effectiveness of TLBO is established through test results over particle swarm optimization (PSO) and Big Bang-Big Crunch (BB-BC) algorithms for the ED problem.
机译:鉴于对环境的日益关注,电力系统工程师被迫生产优质的绿色能源。因此,经济调度(ED)旨在以最小的燃料成本满足环境和电压约束以及对有功和无功功率的基本约束的发电需求。通过在ED问题中包括其他约束,可以实现减少对环境不利影响的排放控制。当前,电力系统大部分在其稳定极限附近运行,因此随着需求的增加,系统面临电压问题。在当前工作中,通过在弱母线上放置静态无功补偿器(SVC)将母线电压控制在极限范围内,这可以通过母线参与因子来确定。 SVC的最佳大小由单变量搜索方法确定。本文介绍了基于教学学习的优化(TLBO)算法在有功和无功约束下的电压稳定环境友好型ED问题的使用。 TLBO的计算效率是通过针对ED问题的粒子群优化(PSO)和大爆炸-大紧缩(BB-BC)算法的测试结果确定的。

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