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首页> 外文期刊>Electric power systems research >An Overview of Optimization Approaches for Operation of Hybrid Distributed Energy Systems with Photovoltaic and Diesel Turbine Generator
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An Overview of Optimization Approaches for Operation of Hybrid Distributed Energy Systems with Photovoltaic and Diesel Turbine Generator

机译:具有光伏和柴油机发电机的混合分布能源系统的优化方法概述

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摘要

Humanity is presently confronting a global energy crisis this is due to an insufficiency in traditional energy sources while the energy demands are worldwide increased. In response to this crisis, improving energy efficiency and sustainability and are becoming significantly important. Therefore, distributed energy systems are extremely important in terms of having multiple energy sources to meet time-varying consumer demands. Recently, hybrid distributed energy system has become widely applied to raise system reliability and improve power quality instead of depending on one type of conventional energy sources such as diesel generators. Yet, it faces some challenges in its widespread deployment such as unpredictable nature and intermittently varying renewable energy sources like solar radiation. This issue can be overcome by integrating energy storage that manages the time mismatch between energy production and load requirements. Hence, it is important to review the recent promising approaches for the optimization of hybrid systems to reduce the operation cost and total network losses. This work encompasses a review of the recent optimization approaches for hybrid energy systems with PV, diesel turbine generators, and energy storage systems to give the basis for solving difficult and intricate real-world problems related to distributed energy system operation.
机译:人类目前面临全球能源危机,这是由于传统能源不足,而能源需求是全世界的增加。为应对这场危机,提高能源效率和可持续性,变得显着重要。因此,分布式能量系统在具有多种能源以满足时变的消费者需求方面非常重要。最近,混合分布式能量系统已被广泛应用于提高系统可靠性并提高电力质量,而不是取决于柴油发电机等一种类型的传统能源。然而,它面临着广泛的部署中的一些挑战,例如不可预测的性质,并且间歇性地改变了太阳辐射等可再生能源。通过集成在能量生产和负载要求之间管理时间不匹配的能量存储来克服此问题。因此,重要的是回顾最近有希望优化混合动力系统以降低运营成本和总网络损耗的方法。这项工作包括对具有PV,柴油机发电机和能量存储系统的混合能量系统最近的优化方法,以赋予解决与分布能量系统操作相关的困难和错综复杂的实际问题的基础。

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