喀麦隆西北部地区巴门达市光伏系统的技术评估

J. N. Mungwe, Njimboh Henry Alombah, Asoh Derek Ajesam, Ayeah Nestor Chonain, N. Mbaka
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引用次数: 0

摘要

喀麦隆巴门达市的家庭正在采用太阳能光伏系统(SPVS)。太阳能光伏系统在该市的普及率取决于其技术性能。本研究旨在评估该市太阳能光伏系统的技术安装情况。研究人员进行了实地考察,并发放了调查问卷。实地考察评估了 SPVS 技术安装规范的遵守情况。调查问卷收集了有关 SPVS 技术状况的数据。所安装的 SPVS 包括光伏和电网为不同负载供电,以及光伏和电网为相同负载供电。安装的负载包括交流负载和直流负载,容量从 360 瓦到 10000 瓦不等。安装的 SPVS 供电负载从 300 W 到 7000 W 不等。光伏阵列的功率从 200 W 到 3200 W 不等,电池组容量从 100 Ah 到 800 Ah 不等。光伏阵列大多安装在屋顶上。只有 5% 的 SPVS 是由经过认证的人员安装的。超过 50% 的已安装 SPVS 的运行时间低于设计运行时间。已安装系统的故障与逆变器(36%)和电池组(36%)有关。大多数光伏阵列安装在倾斜角度在 20° 至 50° 之间的屋顶上。超过 50% 的光伏阵列朝向南方以外的方向。仅有 14% 的已安装系统安装了保护装置。一些 SPVS 的尺寸不正确。由此可以得出结论,大多数已安装的 SPVS 没有遵守技术安装规范,也没有根据用户需求确定尺寸。要使 SPVS 技术在喀麦隆巴门达市和其他撒哈拉以南地区的社区得以生存和普及,就必须在设计和安装该技术方面开展宣传和能力建设,并制定相关政策和法规。
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Technical Evaluation of Photovoltaic Systems in the Bamenda Municipality of the North West Region of Cameroon
In the Bamenda Municipality of Cameroon households are adopting Solar Photovoltaic Systems (SPVS). The penetration of SPVS in this Municipality depends on their technical performance. The study aimed to evaluate the technical installation of SPVS within the Municipality. A field inspection and administration of a questionnaire was conducted. The field inspection evaluated the respect of technical installation norms for SPVS. The questionnaire captured data on the technical situation of the SPVS. The SPVS installed included PV and grid to power separate loads, and PV and grid to power same loads. The installed loads were a mix of AC and DC loads of capacity from 360 W to 10000 W. The load powered by the installed SPVS varied from 300 W to 7000 W. The PV array varied from 200 W to 3200 W and battery bank capacity of 100 Ah to 800 Ah. The PV arrays were mostly installed on roof tops. Only 5% of the SPVS were installed by certified personnel. More than 50% of the installed SPVS operated below designed operation time. Failures in installed systems were related to inverters (36 %) and battery banks (36 %). Most of the PV arrays were installed on rooftops at tilt angles between 20° and 50°. More than 50 % of the PV arrays were oriented to directions other than South. Protective devices were installed in only 14 % of the installed systems. Some of the SPVS were not properly dimensioned. It may be concluded that most of the installed SPVS do not respect the technical installation norms and were not dimensioned according to users’ needs. The survival and penetration of SPVS technology in the Bamenda Municipality, Cameroon, and other sub-Saharan communities requires awareness and capacity building, policies, and regulations in the design and installation of this technology.
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