About Hydraulic adjustment method of photovoltaic support
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6 FAQs about [Hydraulic adjustment method of photovoltaic support]
What is a fixed adjustable photovoltaic support structure?
In order to respond to the national goal of “carbon neutralization” and make more rational and effective use of photovoltaic resources, combined with the actual photovoltaic substation project, a fixed adjustable photovoltaic support structure design is designed.
Can a hydraulic support adjust its attitude with its own adjustment device?
(2) The real hydraulic support has a limited ability to adjust its attitude with its own adjustment device. According to this work, increasing the stroke of the adjustment device can improve the adjustment capacity of the hydraulic support.
How to improve the adjustment capacity of hydraulic support?
According to this work, increasing the stroke of the adjustment device can improve the adjustment capacity of the hydraulic support. Therefore, the next research step should be to study a method to improve the adjustment ability of the hydraulic support, such as by changing the installation position, quantity, and structure of the racking device.
Can local hydropower supplementation reduce wind and solar power output?
This model aimed to coordinate cascade hydropower with adjacent wind and photovoltaic facilities. The research revealed that 90% of fluctuations in wind and solar power output could be mitigated through local hydropower supplementation.
Can a virtual decision-making method be used to autonomously adjust hydraulic supports?
6.2.1. Experimental steps To verify the effectiveness of the proposed virtual decision-making method for the autonomous adjustment of hydraulic supports proposed, the abnormal poses of adjacent supports were constructed in the virtual decision-making scene, and a virtual adjustment simulation experiment was carried out.
How do hydraulic support groups work in virtual space?
The method reconstructs the position and attitude of the hydraulic support group in virtual space based on the working condition information of the physical space, and then relies on virtual decision-making, virtual execution, and optimization to generate a specific adjustment plan.
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