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Voltage stability assessment of isolated hybrid dish-stirling solar thermal-diesel microgrid with STATCOM using mine blast algorithm

机译:使用矿山爆炸算法,STATCOM隔离混合型烟囱斯特林太阳能热柴油微电网的电压稳定性评估

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摘要

This paper presents the voltage control of an isolated hybrid diesel-dish-Stirling solar thermal system (DSP) based power system. As DSP is employed with an induction generator (IG), it needs reactive power for magnetic field. Though synchronous generator (SG) is coupled with the diesel generator, SG alone unable to supply sufficient reactive power to cater the reactive power requirement of the consumers load and the IG. Under such circumstances, static synchronous compensator (STATCOM) is used to meet the reactive power demand. The parameters of the controllers employed with the STATCOM as well as automatic voltage regulator (AVR) of the SG are tuned simultaneously applying recently developed mine blast algorithm (MBA). Performance of the MBA based controllers are compared with that of the cuckoo search algorithm (CS), and particle swarm optimization (PSO) based counterpart on the proposed model. Application of STATCOM and MBA based control strategy in dieseldish-Stirling solar thermal system-based hybrid system for reactive power regulation is a maiden attempt. Extensive simulations of the model for dynamic responses of voltage deviations and reactive deviations under several uncertain conditions, such as step disturbance in reactive power load of the consumers and IG without/ with STATCOM, realistic variations of power output of DSP and reactive load have been carried out. Results analyses indicate that MBA based control strategy is the best amongst all the control strategies attempted here in the terms of maximum overshoot and the settling time. Further, meager values of the maximum overshoot and the settling time under several uncertain conditions justify the coordinated control of AVR and STATCOM to maintain the voltage stability of the isolated hybrid system.
机译:本文介绍了基于隔离的混合柴油盘斯特林太阳能热系统(DSP)电力系统的电压控制。由于DSP与诱导发电机(IG)一起使用,因此它需要磁场的无功功率。尽管同步发电机(SG)与柴油发电机相连,但单独的SG无法提供足够的无功功率以满足消费者负荷和IG的无功功率要求。在这种情况下,静态同步补偿器(Statcom)用于满足无功功率需求。使用STATCOM的控制器以及SG的自动电压调节器(AVR)的参数同时应用最近开发的矿山BLAST算法(MBA)。基于MBA的控制器的性能与Cuckoo搜索算法(CS)和基于粒子群优化(PSO)的对应物进行比较。 STATCOM和MBA基于MBA控制策略在柴水斯特林太阳能热系统的混合系统中的无功动力调节是少女尝试。在几个不确定条件下的电压偏差动态响应和无功偏差模型的广泛模拟,例如消费者和Ig的无功负荷的步骤扰动,没有/使用Statcom,已经进行了DSP和无功负荷的实际变化出去。结果分析表明,基于MBA的控制策略是在最大过冲和稳定时间的术语中尝试的所有控制策略中最好的控制策略。此外,在几个不确定条件下的最大过冲和沉降时间的微薄值证明了AVR和Statcom对AVR和Statcom的协调控制来保持隔离混合系统的电压稳定性。

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