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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Utility-transit nexus: Leveraging intelligently charged electrified transit to support a renewable energy grid
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Utility-transit nexus: Leveraging intelligently charged electrified transit to support a renewable energy grid

机译:公用事业 - 过境Nexus:利用智能充电的电气过渡,支持可再生能源网格

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摘要

The transportation sector is a major greenhouse gas emitter. Concurrent electrification of vehicles and investment in renewable energy sources (RESs) is required to mitigate these emissions. The introduction of intermittent RESs such as solar and wind at a large scale presents challenges to utility operators. This study quantifies the opportunity a Vehicle-to-Grid (V2G) Battery Electric Bus (BEB) fleet offers in overcoming these challenges. A Gumbi optimization model was developed to simulate the reaction of grid operators to changing load and production values by seeking the lowest operational cost at each timestep. The optimization model is integrated with a BEB energy consumption model. The two models interact to optimally maintain necessary charge for the BEB fleet and support the grid load. An Austin, Texas case study is analyzed to investigate the role of BEB charging in buffering sharp changes in RES production to help smooth power demands from traditional energy sources of coal, natural gas, and nuclear power. A V2G BEB "smart charging" (SC) scenario is compared in cost and emissions to a BEB "charge-as-needed" and a diesel bus scenario. Without any SC strategies, the total external cost of the electricity grid and bus emissions falls by 3.42%, and with SC strategies these costs fall by 5.64%. Further, with SC strategies, the utility manager saved 22% of their daily cost in this case study. Overall, the study provides practical avenues for jointly utilizing renewable energy sources and electric mobility alternatives.
机译:交通部门是一个主要的温室气体发射器。需要同时的车辆和可再生能源投资(RESS)来减轻这些排放。在大规模的情况下引入间歇性的粗糙,如太阳能和风,对公用事业运营商提供挑战。本研究量化了车辆到网格(V2G)电池电动总线(BEB)舰队提供的机会克服这些挑战。开发了一个Gumbi优化模型来模拟电网运营商通过寻求每个时间步骤最低的运营成本来改变负载和生产值的反应。优化模型与BEB能量消耗模型集成。这两种型号相互作为以最佳地保持BEB舰队的必要电荷并支持电网负荷。分析了奥斯汀,德克萨斯案例研究以研究BEB充电在勘探器生产中缓冲急剧变化的作用,以帮助煤炭,天然气和核电力的传统能源顺利进行功率需求。 V2G BEB“Smart Charging”(SC)方案以成本和排放与贝布“按需”和柴油总线场景进行比较。如果没有任何SC策略,电网和总线排放的总产成本下降3.42%,SC策略这些成本下降5.64%。此外,通过SC策略,本实用经理在本案例研究中保存了每日成本的22%。总体而言,该研究提供了合作使用可再生能源和电动机动障碍的实用途径。

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