How Much Power Is Needed To Park and Retrieve One Car?

Automated parking systems are making parking facilities everywhere more efficient. However, behind this convenience lies a critical consideration: power consumption. Urban planners and facility managers should understand the energy footprint of these systems. Knowing how much power it takes to park and retrieve vehicles shapes your business’s operation costs, sustainability efforts, and potential infrastructure strains. Keep reading to learn the specifics behind automated parking power consumption.

Power Needs for Automated Parking

The automated parking and retrieval process for a single car may seem quick and effortless to the consumer. However, facility managers should know this process requires various components, from robotic trolleys to conveyance mechanisms, all of which use electricity. When considering automated parking solutions for your business, it’s crucial to keep its electricity needs in mind.

Ensure your facility can support multi-car parking and shuttling without straining your local grid. Recognizing these nuances is critical for feasibility and in embedding the parking design into the surrounding infrastructure. For example, if you plan to utilize basement car lifts, you’ll need to plan your infrastructure and electrical needs beforehand.

Retrieving One Car

Now that you understand the importance of energy considerations, let’s get into the specifics. To park and retrieve a single car, robotic parking systems use 3.5 –4 kW/Hr on average. The process involves numerous sensors and actuators that draw upon the power supply.

Once you know the power usage for storing a single vehicle, you can calculate the average total power consumption based on your facility’s daily users. Large-scale, multi-level parking facilities will naturally use more power than smaller facilities experiencing less traffic.

How Automated Parking Promotes Sustainability

Business owners and city planners can also take advantage of the many sustainable benefits of automated parking. These systems assist by consolidating space and advocating sustainability through smart energy management. Combining underground parking facilities with basement car lifts can help you preserve crucial building land and green space for properties and city planning.

Lifts also minimize vehicle emissions from traditional parking means. In addition, the modular and scalable nature of these systems facilitates the integration of green technologies, nodding to sustainable development goals.

Understanding and optimizing the power requirements for automated parking solutions to park and retrieve one car could mean the difference between a sustainable system and a costly, energy-guzzling one. A deliberate focus on power utilization and management will cut operational overhead costs and carve a path for greener, more resilient urban landscapes.

Whether you’re overseeing parking solutions on a community-wide scale or for a single business or facility, you can find a parking lift to meet your energy needs. Browse automated lift models, like basement car lifts, at Harding Autopark Systems. We’ll help you find the ideal parking system for your business, facility, or other structure.