Smart Elevators for Healthcare: Driving Energy Efficiency and Carbon Reduction

Smart Elevators for Healthcare: Driving Energy Efficiency and Carbon Reduction

Smart Elevators for Healthcare: Driving Energy Efficiency and Carbon Reduction

Revolutionary Elevator Solutions: Transforming the Nightmare of Hospital Elevators

Revolutionary Elevator Solutions: Transforming the Nightmare of Hospital Elevators

Revolutionary Elevator Solutions: Transforming the Nightmare of Hospital Elevators

In today's urban lifestyle, elevators have become an indispensable part of our daily lives. However, have you ever imagined? With the application of technology, we can not only make elevators smarter but also save energy! Let's embark on a journey to explore how we can leverage existing elevator operations to unlock energy-saving advantages.

In today's urban lifestyle, elevators have become an indispensable part of our daily lives. However, have you ever imagined? With the application of technology, we can not only make elevators smarter but also save energy! Let's embark on a journey to explore how we can leverage existing elevator operations to unlock energy-saving advantages.

Currently, elevator energy-saving methods are divided into three main approaches:

The key to elevator energy efficiency lies in optimizing hardware technology and operational modes. Here are some common energy-saving technologies applied in elevators:

  1. High-efficiency motors: Some relatively newer elevators use high-efficiency motors that reduce energy consumption during operation while providing superior efficiency and performance.

  2. Installation of regenerative power devices: These systems recover and reuse energy generated during elevator operation, further enhancing energy efficiency.

  3. Diverting systems: Implementing strategies such as odd-even or high-low floor diversion to achieve energy savings through distributed elevator operation.

Big data offers us unique solutions

The following analyzes how our system, based on actual installation conditions (a hospital in the northern region, referred to as Hospital A), calculated and simulated energy-saving outcomes based on riding patterns:

Currently, elevator energy-saving methods are divided into three main approaches:

The key to elevator energy efficiency lies in optimizing hardware technology and operational modes. Here are some common energy-saving technologies applied in elevators:

  1. High-efficiency motors: Some relatively newer elevators use high-efficiency motors that reduce energy consumption during operation while providing superior efficiency and performance.

  2. Installation of regenerative power devices: These systems recover and reuse energy generated during elevator operation, further enhancing energy efficiency.

  3. Diverting systems: Implementing strategies such as odd-even or high-low floor diversion to achieve energy savings through distributed elevator operation.

Big data offers us unique solutions

The following analyzes how our system, based on actual installation conditions (a hospital in the northern region, referred to as Hospital A), calculated and simulated energy-saving outcomes based on riding patterns:

With the strategic logic mentioned above, we've devised two innovative reference data schemes for Institute A through precise calculations:

With the strategic logic mentioned above, we've devised two innovative reference data schemes for Institute A through precise calculations:

With the strategic logic mentioned above, we've devised two innovative reference data schemes for Institute A through precise calculations:

Building on the aforementioned strategy, we will now transform the electrical components into the following innovative computational process:

Building on the aforementioned strategy, we will now transform the electrical components into the following innovative computational process:

Building on the aforementioned strategy, we will now transform the electrical components into the following innovative computational process:

The numbers outlined above estimate the potential electricity savings. Based on the carbon emission figure of 0.509 provided by the Ministry of Economic Affairs, calculations show an energy saving of approximately 0.509*20520=10444.68, with a further 30% reduction leading to about 3133.404, potentially saving 1.59 metric tons of CO2e annually. This figure equates to approximately 11% of the carbon absorption capacity of a hectare of forest. Moreover, by implementing strategies such as "streamlining operations," "integrating pre-scheduling," and "managing peak-time dispatch," the elevators at Building A could further reduce waiting times and optimize energy savings! These results derive from simulations with 3 elevators, and with A Hospital having 10 elevators in operation, the efficiency could potentially triple.

The numbers outlined above estimate the potential electricity savings. Based on the carbon emission figure of 0.509 provided by the Ministry of Economic Affairs, calculations show an energy saving of approximately 0.509*20520=10444.68, with a further 30% reduction leading to about 3133.404, potentially saving 1.59 metric tons of CO2e annually. This figure equates to approximately 11% of the carbon absorption capacity of a hectare of forest. Moreover, by implementing strategies such as "streamlining operations," "integrating pre-scheduling," and "managing peak-time dispatch," the elevators at Building A could further reduce waiting times and optimize energy savings! These results derive from simulations with 3 elevators, and with A Hospital having 10 elevators in operation, the efficiency could potentially triple.

Since its installation at Hospital A in 2022, our system has been continually learning about the flow of people in its operational environment. With our constant software innovations, we are persistently advancing the application of smart elevators in safety management.

As technology continues to evolve, we are committed to pursuing a more efficient and intelligent elevator experience. By harnessing artificial intelligence and the Internet of Things, we aim to create smarter, more eco-friendly elevator systems. Enhancing elevator energy efficiency not only benefits the environment but also offers a superior riding experience. We anticipate innovative solutions to drive further improvements in elevator energy conservation and efficiency, providing cities with more convenient, comfortable, and sustainable transportation options.

Since its installation at Hospital A in 2022, our system has been continually learning about the flow of people in its operational environment. With our constant software innovations, we are persistently advancing the application of smart elevators in safety management.

As technology continues to evolve, we are committed to pursuing a more efficient and intelligent elevator experience. By harnessing artificial intelligence and the Internet of Things, we aim to create smarter, more eco-friendly elevator systems. Enhancing elevator energy efficiency not only benefits the environment but also offers a superior riding experience. We anticipate innovative solutions to drive further improvements in elevator energy conservation and efficiency, providing cities with more convenient, comfortable, and sustainable transportation options.

+886-2-7751-5356

service@owlsome.tech

12F, No. 37, Section 3, Minquan East Road, Zhongshan District, Taipei City 104478, Taiwan (R.O.C)

LINE:@owlsome.tech

© Owlsome Tech All Rights Reserved.

+886-2-7751-5356

service@owlsome.tech

12F, No. 37, Section 3, Minquan East Road, Zhongshan District, Taipei City 104478, Taiwan (R.O.C)

LINE:@owlsome.tech

© Owlsome Tech All Rights Reserved.

+886-2-7751-5356

service@owlsome.tech

12F, No. 37, Section 3, Minquan East Road, Zhongshan District, Taipei City 104478, Taiwan (R.O.C)

LINE:@owlsome.tech

© Owlsome Tech All Rights Reserved.