用于远程数据采集站的太阳能/风能电源的设计

D. Heinemann, J. Luther, W. Wiesner
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引用次数: 3

摘要

作者报告了为监测O/sub - 3/和NO/sub - 2/浓度的远程生态站确定自主可再生能源电源的系统配置而进行的模拟计算。该系统的平均电力负荷为100-120瓦,由光伏和风能转换器供电,并包括一个铅酸蓄电池。不使用备用能源。相同的系统设计应适用于在相同范围内具有电力需求的电信站。虽然给定场地的特点是风气候相当差(v/sub 10m/=3.7 m/s),但利用两种在某种程度上互补的能源可以大大节省硬件投资。能量生产的平衡对系统的电池是有益的。只有30-35%的负载是由电池提供的,因此产生了一个低的有效循环率,延长了电池的寿命。负荷管理策略可以显著改善负荷分布与可再生能源生产的匹配。将系统硬件减少1 / 2(取决于应用的策略)是可能的
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a solar/wind power supply for a remote data acquisition station
The authors report on simulation calculations carried out to determine the system configuration of an autonomous renewable power supply for a remote ecological station monitoring concentrations of O/sub 3/ and NO/sub 2/. The system has a mean electric load of 100-120 W, is powered by photovoltaics and a wind-energy converter, and includes a Pb-battery storage. No backup energy source is used. The same system design should be valid for telecommunication stations having a power demand in the same range. Although the given site is characterized by a rather poor wind climate (v/sub 10m/=3.7 m/s), the utilization of two to-some-extent complementary energy sources leads to a considerable saving in hardware investments. the levelling of the energy production is beneficial for the system's battery. Only 30-35% of the load is supplied by the battery, thus yielding a low effective cycling rate which extends the lifetime of the battery. Load management strategies may improve the matching of load profile and renewable energy production considerably. Reductions in system hardware up to a factor of 2 (depending on the applied strategy) are possible.<>
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