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Coordinated multi-criteria framework for cycling aging-based battery storage management strategies for positive building-vehicle system with renewable depreciation: Life-cycle based techno-economic feasibility study

机译:协调基于骑行老化的电池存储管理策略的协调多标准框架,用于可再生折旧的正建筑 - 车辆系统:基于生命周期的技术经济可行性研究

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The battery-protective control strategy, vehicle-to-building (V2B) interactions, and economic policy regarding grid feed-in tariff are promising techniques for enhancing the lifecycle-based techno-economic performance. However, the current literature indicates limited progress in the techno-economic feasibility of positive building-vehicle systems, with considerations on battery cycling aging, degradation of hybrid renewable generations, and dynamic grid-responsive control strategy. In this study, an interactive building-vehicle system was mathematically formulated with multidirectional energy interaction paradigms, such as building-to-vehicle, grid-to-building, building-to-grid, and grid-to-vehicle. The roles of the V2B interaction levels, grid feed-in schemes, and energy management strategies in techno-economic performances were quantitatively characterised, from the perspectives of the net present value (NPV), discounted payback time (DPT), and net direct energy consumption. Novel energy management strategies were proposed for battery relative capacity improvement in response to the dynamic renewable-demand signal and grid information. Furthermore, uncertainty and sensitivity analyses were performed on the renewable system cost, battery cost, interest rate, and escalation rate of the electricity price. The results indicated that the ignorance of battery cycling aging results in an overestimation on NPV from 2.404 x 10(8) (0.310 x 10(8) US$) to 3.005 x 10(8) HK$ (0.388 x 10(8) US$). Furthermore, compared to traditional rough estimation on battery aging (with the NPV at 2.446 x 10(8) HK$ and the DPT at 4 years), the dynamic model in this study can provide more accurate and reliable battery relative capacity, together with conservative assessment on techno-economic feasibility (the NPV at 1.860 x 108 HK$ (0.240 x 10(8) US$) and the DPT at 5 years). In comparison with the grid feed-in tariff policies in most European countries, the implementation of the latest grid feed-in tariff in Hong Kong can increase the NPV from -7.633 x 107 (-0.985 x 10(8) US$) to 2.303 x 10(8) HK$ (0.297 x 10(8) US$) for the positive building-vehicle system. An interactive building-vehicle system was formulated, together with advanced management strategies for lifecycle-based techno-economic performance enhancement. Comparative analyses among scenarios with different control strategies, V2B interaction levels, and grid feed-in tariff schemes were performed to verify the reliability of the proposed technique for positive building-vehicle systems.
机译:电池保护控制策略,建筑物(V2B)相互作用以及关于电网饲料关税的经济政策是提高生命周期的技术经济表现的有希望的技术。然而,目前的文献表明,关于电池循环老化,混合可再生代的降解和动态网格响应控制策略的考虑,对正建筑车辆系统的技术经济可行性有关的有限进展。在这项研究中,在数学上配制了交互式建筑车辆系统,这些系统是用多向能量相互作用范例的,例如建立车辆,网格与建立的建筑物到网格和栅格到车辆。 V2B互动级别,网格进料方案和能源管理策略在技术经济表演中的作用是量观的,从净目前(NPV),折扣回收时间(DPT)和净直接能量的角度来表现出来消费。提出了新的能源管理策略,用于响应动态可再生需求信号和网格信息的电池相对容量改进。此外,对可再生系统成本,电池成本,利率和电力价格的升级进行了不确定性和敏感性分析。结果表明,电池循环衰老的无知导致NPV的高估来自2.404 x 10(8)(0.310 x 10(8)美元)到3.005 x 10(8)HK $(0.388 x 10)美国$)。此外,与电池老化的传统粗略估计相比(在4年的4446 x 10(8)HK $和DPT的NPV)上,本研究中的动态模型可以提供更准确和可靠的电池相对容量,以及保守评估技术经济可行性(NPV为1.860 x 108 HK $(0.240 x 10(8)美元)和5年的DPT)。与大多数欧洲国家的电网饲养税政策相比,香港最新电网饲料关税的实施可以从-7.633 x 107(-0.985 x 10(8)美元)增加npv(-0.985 x 10(8)美元)到2.303 X 10(8)HK $(0.297 x 10(8)美元)用于正建筑车辆系统。制定了一个互动式建筑车辆系统,以及基于生命周期的技术经济性能提升的先进管理策略。进行了不同控制策略,V2B互动级别和电网馈电关税方案的情景的比较分析,验证了正建筑车辆系统所提出的技术的可靠性。

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