GameChange Solar宣布单轴太阳能跟踪器全面地震测试成功

来源:www.gulfoilandgas.com,2026年3月30日,地点:北美

GameChange Solar宣布,其Genius Tracker跟踪系统在加州大学伯克利分校太平洋地震工程研究中心(PEER)成功完成了业内首个全尺寸地震振动台测试项目。该测试严格按照IEEE 693抗震设计标准进行,模拟了新马德里地震带等高风险地区的极端地震条件。此次测试代表了美国太阳能装置可能遇到的最强、最可信的地震情景之一。测试中,

安装了光伏组件的全尺寸跟踪系统承受了逐渐增强的地震输入,包括宽带激励和高达2.5g谱加速度的高性能测试。

该系统在多种配置和测试强度下均表现出色:
关键部件(包括扭矩管、轴承、支柱和执行器)未发生结构性损坏;
抗震设计特性(包括GameChange专有的侧向捕获系统)按预期发挥作用,并在测试过程中有效地重新分配了载荷。
- 测试过程中,未出现组件微裂纹或明显的功率损失,光伏组件的性能衰减率低于1%
。- 测试后,跟踪器电机仍保持了系统的完全功能。

“随着太阳能发电扩展到加利福尼亚州、智利和新马德里断层带等地震高风险地区,业内几乎没有关于现代公用事业级跟踪器和组件在地震中性能的实际数据,”GameChange Solar首席工程师Scott Van Pelt表示。“这项测试改变了这一现状。我们现在有了确凿的证据,证明像GameChange的Genius Tracker这样的太阳能跟踪系统可以设计成能够承受与有效地震相关的力。”

这项测试的结果已在白皮书《单轴太阳能跟踪器的地震振动台测试》中进行了详细介绍,可从GameChange Solar网站索取。此外,这项测试还在3月18日播出的《光伏杂志》网络研讨会上进行了展示,该研讨会探讨了振动台测试如何展现太阳能跟踪器的抗震性能,点击此处即可观看。


太阳能电站的地震故障可能导致大面积组件损坏、高昂的维修费用、数月的发电量损失,以及运维人员面临的潜在危险。通过建立经验性能基准,GCS 能够帮助项目开发商、资产所有者和保险公司更明智地评估地震风险,并为高风险地区的电站提供可靠的工程基础。

位于加州弗里蒙特的可再生能源测试中心 (RETC) 的独立验证证实,该系统在测试活动后仍保持良好的物理和运行状态。
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这些结果表明,Genius Tracker 系统经过精心设计,能够在高地震环境下提供可靠性和性能,从而支持在世界上一些最苛刻的条件下部署太阳能发电。

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原文链接/GulfOilandGas

GameChange Solar Announces Successful Full-Scale Seismic Testing of Single-Axis Solar Trackers

Source: www.gulfoilandgas.com 3/30/2026, Location: North America

GameChange Solar announced the successful completion of the industry's first full-scale seismic shake table testing program for its Genius Tracker锟� system at UC Berkeley's Pacific Earthquake Engineering Research (PEER) Center. The testing was conducted in accordance with IEEE 693 seismic design standards, simulating extreme earthquake conditions representative of high-risk regions such as the New Madrid Seismic Zone. This testing represents one of the most intense credible seismic scenarios for a U.S. solar installation.

A full-scale tracker system with mounted PV modules was subjected to progressively increasing seismic inputs, including broadband excitation and high-performance-level testing up to 2.5g spectral acceleration.

The system demonstrated strong performance across multiple configurations and test intensities:
- No structural damage to key components, including torque tubes, bearings, posts, and actuators.
- Seismic design features, including GameChange's proprietary Lateral Capture System, engaged as intended and effectively redistributed loads during testing.
- No module microcracking or meaningful power loss, with degradation under 1% of the PV modules used during the testing
- Full system functionality was maintained by the tracker motor after testing.

"As solar expands into seismic-risk regions like California, Chile, and the New Madrid Fault Zone, the industry has had negligible real-world data on how modern utility scale trackers and modules perform in an earthquake," said Scott Van Pelt, Chief Engineer at GameChange Solar. "This test changes that. We now have conclusive evidence that a solar tracking system, such as GameChange's Genius Tracker, can be designed to withstand the forces associated with a meaningful earthquake."

The results of this testing are covered in the White Paper "Seismic Shake Table Testing of Single Axis Solar Trackers," which is available upon request from GameChange Solar's website. Furthermore, this testing was presented as part of a pv magazine webinar, on how shake table testing shows earthquake resilience of solar trackers, which aired on March 18th and available here.


A seismic failure at a solar plant could mean widespread module damage, costly repairs, months of lost generation, and potentially dangerous conditions for O&M personnel. By establishing an empirical performance baseline now, GCS is enabling project developers, asset owners, and insurers to make more informed decisions about seismic risk and provide a credible engineering foundation for sites in high-hazard zones.

Independent validation by the Renewable Energy Test Center (RETC) in Fremont, CA confirmed the system remained in good physical and operating condition following the test campaign.
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These results demonstrate that the Genius Tracker system is engineered to deliver reliability, and performance in high seismic environments, supporting solar deployment in some of the world's most demanding conditions.

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