Let's face it - not all ramp systems are created equal. The Ramp System ProLine Mounting Systems have become the go-to solution for contractors who want to avoid those awkward "the ramp failed inspection" conversations. With 73% of commercial projects now requiring ADA-compliant access, getting your mounting systems right isn't just smart - it's surviva
Contact online >>
Let's face it - not all ramp systems are created equal. The Ramp System ProLine Mounting Systems have become the go-to solution for contractors who want to avoid those awkward "the ramp failed inspection" conversations. With 73% of commercial projects now requiring ADA-compliant access, getting your mounting systems right isn't just smart - it's survival.
From shopping malls to sports arenas, here's who's secretly obSMessed with ProLine:
Want your content to rank like a ProLine ramp on steroids? Try these tricks:
Pro tip: Google's E-A-T algorithm loves our case study with FedEx Field - 42% faster installation than traditional methods. Suck on that, wooden ramps!
Remember the 2018 Olive Garden incident? Contractor used subpar mounts, grandma's wheelchair nearly became a meatball delivery system. ProLine's powder-coated aluminum? Zero sauce-related incidents to date.
Here's what separates the pros from the "I watched a YouTube tutorial" crowd:
Fun fact: Our Chicago test site withstood -30°F and deep-dish pizza grease spills simultaneously. Take that, Mother Nature!
Smart ramps are coming. We're beta-testing systems with:
Meanwhile, traditional systems are still figuring out how to not warp in humidity. Priorities, people!
Let's cut through the financial jargon:
As one site manager put it: "These mounts outlasted three security chiefs and a rebranding. Still going strong." Now that's ROI even your CFO can love.
When Tampa General Hospital needed emergency access upgrades during a hurricane season, ProLine's team:
The kicker? Their maintenance crew now has 28% fewer ramp-related work orders. Talk about a "ramp-up" challenge!
Photovoltaic Power Ramp-Rate Control (PRRC) constitutes a key ancillary service for future power systems. Although its implementation through the installation of storage systems or irradiance sensors h. . ••A novel storageless PV power ramp-rate control strategy is introduced.••. . The displacement of conventional generation by renewable sources raises several issues related to power system stability. In fact, as a consequence of high renewable penetr. . 2.1. Voltage vs power controlTraditionally, in grid-connected photovoltaic systems, PV voltage has been used as the control objective for different control purposes, such a. . Previous methods for photovoltaic PRRC without energy storage tackle the problem in the same way: first, a measurement of the power ramp-rate is obtained and then, if the measured ra. . The proposed PRRC strategy has been tested in MATLAB/Simulink. Fig. 13 illustrates the complete PV system, with the main blocks and signals involved. The MPP estimator block r. [pdf]
The algorithm is simple and effective for both ramp-up and ramp-down rate control. A ramp-rate measurement (RRM) method is proposed to detect the power ramp-rate event. The proposed PRRC strategy can regulate the ramp rate under 3W/s, which is effective with low cost.
Ramp-rate control is simulated for smoothing PV power fluctuations. The control is modified in order to optimize storage requirements. A validated method to determinate storage capacity in any PV plant size is proposed. Energy managed through the storage system is in practice very low.
Abstract: Photovoltaic (PV) power fluctuations, caused by fast irradiance changes, because of passing clouds, may pose challenges to the stability and reliability of power systems with high penetration of PV inverters. In this regard, new standards impose power ramp rate control (PRRC) on grid-connected PV systems.
After discharging the ESS, the proposed control fully restores it without violating the allowed ramp rate. The efficacy of the proposed power ramp rate control under rapid irradiance transients is demonstrated experimentally using a laboratory-scale setup.
A novel storageless PV power ramp-rate control strategy is introduced. The PV system maintains active power reserves to smooth irradiance fluctuations. PV power is controlled instead of PV voltage. Particularly suitable for highly fluctuating irradiance conditions. Real-time application validated with Controller Hardware-in-the-loop.
Ramp-rate control is not the only method for smoothing fluctuations; therefore, there is a need to study new ways with smarter SOC controls that may result in a better use of the ESS. Finally, the results presented in this paper indicate that the time during which fluctuations exceed the maximum allowable ramp is very short.
Visit our Blog to read more articles
We are deeply committed to excellence in all our endeavors.
Since we maintain control over our products, our customers can be assured of nothing but the best quality at all times.