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Probability-Power Pinch Analysis targeting approach for diesel/biodiesel plant integration into hybrid power systems

机译:柴油/生物柴油工厂集成到混合动力系统中的概率-功率捏分析目标方法

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摘要

The hybrid power system (HPS) that integrates diesel/biodiesel plant with renewable energy (RE) technologies has become increasingly popular to alleviate greenhouse gases emissions issue of the sole diesel/biodiesel power system. Integrated diesel-RE power system offers cleaner power supply while minimising cost of diesel fuel and diesel system maintenance. The use of Power Pinch Analysis (PoPA) method for the integration of diesel plants and RE systems into HPS with the objective to minimise fuel requirement and operational time of diesel generator has been presented. This work aims to achieve the same objective via probability theory utilisation, to simplify the PoPA procedure involving the matching of various routes for power flows. The extended technique called the Probability-Power Pinch Analysis (P-PoPA) can give accurate results as those established from the PoPA method within a shorter analysis time because it replaces the tedious manual matching step with correction factors. All probable routes of power from RE and diesel generators to demands are considered in computing the correction factors, in order to target the minimum diesel power in the integrated system. The result of a Case Study demonstrates that 19% saving in diesel fuel consumption can be realised if the present diesel station is supported with renewable solar power in an HPS. The result of the P-PoPA method is accurate with a very minor deviation to that from the conventional PoPA technique. (C) 2019 Elsevier Ltd. All rights reserved.
机译:将柴油/生物柴油工厂与可再生能源(RE)技术集成在一起的混合动力系统(HPS)越来越受欢迎,以缓解唯一的柴油/生物柴油动力系统的温室气体排放问题。集成式柴油RE电源系统可提供更清洁的电源,同时将柴油和柴油系统的维护成本降至最低。提出了使用动力捏分析(PoPA)方法将柴油设备和可再生能源系统集成到HPS中的目的,目的是最大程度地减少燃料需求和柴油发电机的运行时间。这项工作旨在通过概率论的运用来达到相同的目的,以简化PoPA程序,其中涉及对各种潮流进行匹配。扩展的技术称为“概率-功率捏”分析(P-PoPA),可以在更短的分析时间内提供与PoPA方法建立的结果一样的准确结果,因为它用校正因子代替了繁琐的手动匹配步骤。为了确定集成系统中的最小柴油功率,在计算校正因子时会考虑从RE和柴油发电机到需求的所有可能的功率路径。案例研究的结果表明,如果在HPS中使用可再生太阳能来支持当前的柴油站,则可以实现19%的柴油燃料消耗节省。 P-PoPA方法的结果是准确的,与常规PoPA技术的偏差很小。 (C)2019 Elsevier Ltd.保留所有权利。

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