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Adjustable capability of the distributed energy system: Definition,framework, and evaluation model

机译:分布式能量系统的可调能力:定义,框架和评估模型

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The adjustable capability of distributed energy systems responding to the incentives of the upper energy supply system has been significantly improved by energy storage and renewable energy technologies. Most existing research focuses on evaluating the flexibility of distributed energy system itself or the demand response potential of end-users, but there is no specific model which takes the distributed energy system as an integrated load and evaluates its adjustable capability from the perspective of the upper energy supply system. To fill the research gap, this paper defines the adjustable capability of distributed energy systems, describes its characteristics, and proposes a unified evaluation model. Then, from the perspective of energy demand and supply sides, it quantifies the impact of each influential factor in different energy links on the adjustable capability and studies the interactive mechanism between devices within the system. Thereafter, the adjustable capability of distributed energy systems under typical scenarios at a single moment is evaluated, and the impact of economic constraints on the adjustable capability is also extensively analyzed. Accordingly, this paper proposes a sequential recurrence method to evaluate the adjustable capability of distributed energy systems against three different initial states: unknown initial state, fixed initial state, uncertain initial state. Finally, the adjustable capability concept is demonstrated on a practical industrial park to verify the effectiveness and practicability.This study deepens the connection between distributed energy systems and upper energy supply system in the Energy Internet at the energy information level. Which enables distributed energy system to quantize its energy demand range for the upper energy supply system and realize its own reliable operation and rolling optimization. In addition, this evaluation method allows upper energy supply system to plan, overhaul and dispatch more economically and reliably on the basis of understanding the energy demand of distributed energy system. Moreover, upper energy supply system can formulate the demand response strategy with the maximum revenue by balancing the size of adjustable capability interval of distributed energy system and the investment cost of demand response.(c) 2020 Elsevier Ltd. All rights reserved.
机译:通过储能和可再生能源技术响应响应上部能源系统激励的分布式能量系统的可调节能力得到了显着的改善。大多数现有研究侧重于评估分布式能量系统本身的灵活性或最终用户的需求响应潜力,但没有特定模型,该模型将分布式能量系统作为集成负载,并从鞋面的角度评估其可调节能力。能源系统。为了填补研究差距,本文定义了分布式能量系统的可调能力,描述了其特征,并提出了统一的评估模型。然后,从能量需求和供应侧的角度来看,它量化了不同能量联系的每个影响因素对可调节能力的影响,并研究了系统内器件之间的交互式机制。此后,评估分布式能量系统在单一时刻的典型情景下的可调能力,并且还广泛分析了经济限制对可调能力的影响。因此,本文提出了一种顺序复发方法,以评估分布式能量系统对三种不同初始状态的可调能力:未知的初始状态,固定初始状态,不确定的初始状态。最后,在实际工业园区上证明了可调节的能力概念,以验证有效性和实用性。本研究深化了能量信息水平的能量互联网中分布式能源系统和上部能源系统之间的联系。这使得分布式能量系统能够为上部能源系统量化其能量需求范围,并实现其自身可靠的操作和滚动优化。此外,该评估方法允许在理解分布式能量系统的能量需求的基础上,更加经济可靠地规划,改革和调度。此外,通过平衡分布式能量系统的可调能力尺寸和需求响应的投资成本,可以制定需求响应策略的需求响应策略。(c)2020 elestvier有限公司保留所有权利。

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