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Reliability and quality of service of an off-grid wind powered roadside unit in a motorway vehicular environment

机译:高速公路车辆环境中离网式风力路边单元的可靠性和服务质量

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Wind-powered base stations and roadside units have been considered as a cost effective greening solution in windy countries which also have limited solar irradiation. The practicality of such a system increases significantly in sparse areas such as countryside and motorways. The deployment of standalone off-grid wind powered roadside units could alleviate the common issues related to grid connected renewable energy farms. Hence, there is need to study the feasibility of an off-grid wind powered roadside unit for seamless connectivity. Unlike the conventional usage of reliability analysis of fault-tolerant systems, in this paper, reliability is redefined in the context of availability of intermittent wind for powering a roadside unit (RSU) in a UK motorway vehicular environment. Transient analysis of energy consumption (energy demand) of the RSU and harnessed wind energy are carried out along with real measurements for developing respective generic energy models. Further, a generalised methodology is developed to determine the minimum battery size for achieving a certain reliability standard and quality of service. Several reliability indices such as loss of load probability (LOLP). loss of load expectation (LOLE), energy index of reliability (EIR), mean time between failures (MTBF), mean time to recovery (MTTR), forced outage rate (FOR), etc. are obtained for the RSU. The performance results reveal that with a standard micro-turbine and a reasonably small battery, an RSU achieves a good reliability of 99.9% with significant improvement in the quality of service.
机译:风力基站和路边单元在风能有限的国家也被认为是一种经济高效的绿化解决方案,这些国家的太阳辐射也很有限。这种系统的实用性在诸如农村和高速公路等稀疏地区显着增加。部署独立的离网风力路边单元可以缓解与并网可再生能源农场有关的常见问题。因此,有必要研究离网式风力路边单元进行无缝连接的可行性。与容错系统可靠性分析的常规用法不同,本文在英国高速公路车辆环境中为路侧单元(RSU)供电的间歇风的可用性背景下重新定义了可靠性。对RSU和利用的风能的能耗(能源需求)进行瞬态分析,并进行实际测量,以开发相应的通用能源模型。此外,开发了一种通用方法来确定最小电池尺寸,以实现一定的可靠性标准和服务质量。几个可靠性指标,例如负载损失概率(LOLP)。获得RSU的预期负载损失(LOLE),可靠性能源指数(EIR),平均故障间隔时间(MTBF),平均恢复时间(MTTR),强制中断率(FOR)等。性能结果表明,使用标准的微型涡轮机和相当小的电池,RSU可以达到99.9%的良好可靠性,并可以显着改善服务质量。

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