An Energy Management Approach for Isolated Power System using Low Load Diesel

Saira Javed, Safdar Raza, Mughees Riaz
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Abstract

Renewable energy sources (RES) are well known sources for providing energy in distant regions. This is the reason that hybrid isolated power system (HIPS) is utilized which integrates solar energy and wind energy. Renewable energy (RE) relies on environmental conditions. The technologies such as batteries or diesel generator (DG) need to be employed to meet the load demand. Battery energy storage system (BESS) can diminish the limitation but this can add expense and intricacy to the system. DG is an excellent choice to meet load demand but it has certain limitations. Due to diesel load set point, excess RE generation is consumed via regulating devices such as dump load or BESS. As a result, systems designed for high RE penetration are now more complex, expensive, and wasteful. This study analyses low load diesel (LLD). It is a method for minimizing surplus generation hence decreasing system intricacy. It also reduces fuel utilization without causing the control architecture to become overly complicated hence reducing the need for BESS. It provides an alternate method for redefining diesel generation's low load capacity. This work provides an economic analysis of LLD including comparisons to traditional BESS applications. This analysis shows low operational cost of the system including LLD than BESS. Hence demonstrating that BESS can be replaced with LLD. The use of LLD also lowers fuel usage.  A power system model of HIPS is simulated using MATLAB/Simulink.
低负荷柴油机隔离电力系统的能量管理方法
可再生能源(RES)是众所周知的为偏远地区提供能源的来源。这就是采用太阳能和风能相结合的混合隔离电源系统的原因。可再生能源依赖于环境条件。需要采用电池或柴油发电机(DG)等技术来满足负荷需求。电池储能系统(BESS)可以减少这种限制,但这会增加系统的成本和复杂性。分布式发电是满足负荷需求的理想选择,但也存在一定的局限性。由于柴油负荷设定点,多余的可再生能源发电是通过调节装置,如倾倒负荷或BESS消耗。因此,设计用于高RE穿透的系统现在更加复杂、昂贵和浪费。本研究分析了低负荷柴油机(LLD)。这是一种最小化剩余发电从而降低系统复杂性的方法。它还降低了燃料利用率,而不会导致控制体系结构变得过于复杂,从而减少了对BESS的需求。它为重新定义柴油发电的低负荷能力提供了一种替代方法。这项工作提供了LLD的经济分析,包括与传统BESS应用的比较。分析表明,与BESS相比,LLD系统的运行成本更低。由此证明BESS可以被LLD取代。LLD的使用也降低了燃料的使用。利用MATLAB/Simulink对HIPS电力系统模型进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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