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到 2030 年無線電梯市場預測:按組件、建築高度、技術、應用和地區進行的全球分析Ropeless Elevator Market Forecasts to 2030 - Global Analysis By Component, Building Height (High-rise Buildings, Low-rise Buildings and Mid-rise Buildings ), Technology, Application and By Geography |
根據 Stratistics MRC 的數據,2024 年全球無線電梯市場規模為 1.556 億美元,預計到 2030 年將達到 3.637 億美元,預測期內複合年成長率為 15.2%。
無線電梯,也稱為垂直運輸系統,是一種創新的電梯設計,消除了傳統的電纜和滑輪。相反,它使用磁浮技術,使電梯轎廂可以在建築物內垂直和水平移動。該系統提高了建築靈活性,並允許將電梯安裝在傳統模式無法實現的位置,從而更好地利用空間。此外,無線電梯比傳統系統消耗更少的電力,從而更加節能。由於移動部件較少且磨損較少,因此維護成本也較低。
據世界衛生組織 (WHO) 稱,從 2015 年到 2050 年,全球 60 歲及以上人口總數預計將加倍,從 12% 增至 22%。
越來越重視永續建築方法
在高層建築對節能運輸系統的需求的推動下,無線電梯代表了永續建築實踐的重大進步。與依賴纜繩的傳統電梯不同,無線電梯利用磁浮技術,可以垂直和水平移動。這項創新不僅減少了與傳統電梯相關的能源消耗,而且透過消除對大型機械室的需求來最佳化建築空間。此外,無線電梯提高了設計靈活性,使建築師能夠實現更開放和動態的建築佈局。
美觀的考慮
無線電梯具有徹底改變垂直交通的創新潛力,但它們面臨重大的美學問題,阻礙了其廣泛採用。傳統電梯依賴可見的電纜和滑輪,有些人認為這有助於建築空間的溫馨和安全設計。相較之下,無線電梯時尚、簡約的外觀可能與某些建築風格發生衝突,引發人們對室內和室外環境視覺混亂的擔憂。然而,將該技術整合到現有建築中面臨挑戰。維修舊建築以適應該系統可能會損害其歷史之美。
對創新垂直運輸解決方案的需求不斷成長
對創新垂直運輸解決方案不斷成長的需求大大增加了人們對無線電梯的興趣,這項技術正在徹底改變垂直空間的移動方式。與依賴繩索和滑輪的傳統電梯不同,無線電梯利用磁浮和線性馬達系統來實現多向移動。這種設計允許車輛垂直和水平移動,最佳化空間並增加現代建築的可及性。都市區密度的不斷增加增加了對高效交通系統的需求,使無線電梯成為高層建築、交通樞紐和智慧城市的有吸引力的選擇。其能源效率和降低的維護成本滿足了永續性目標,並進一步增強了其吸引力。
監管挑戰
使用磁浮技術進行垂直運動的無線電梯的開發面臨著阻礙其廣泛採用的重大監管挑戰。傳統的電梯系統受到數十年來建立的嚴格安全法規和標準的約束,以確保乘客的安全和可靠性。無線電梯憑藉著創新的設計和操作原理,必須克服複雜的法規,而這些法規通常不考慮其獨特的技術。這包括滿足建築規範、安全認證以及當地和國際標準等挑戰。然而,由於監管機構評估該技術的安全性和有效性,缺乏先例可能會導致核准過程漫長。
COVID-19 大流行對無線電梯技術的開發和採用產生了重大影響,該技術為垂直運輸提供了一種新穎的方法。隨著都市區面臨關門和社交距離措施,對建築設計創新解決方案的需求激增。無線電梯利用磁浮垂直和水平移動,可提高空間效率並減少等待時間,使其對高密度環境特別有吸引力。然而,供應鏈中斷和經濟不確定性減緩了投資和採用。隨著城市開始復甦,對永續和高效基礎設施的關注可能會重新激發人們對無線電梯的興趣,將其定位為應對現代城市挑戰的先進解決方案。
線性馬達領域預計將在預測期內成為最大的領域
預計線性馬達領域在預測期內將佔據最大佔有率。無線電梯是垂直運輸領域的突破性創新,利用線性馬達技術重新定義建築基礎設施的效率和設計。與依賴電纜和滑輪的傳統電梯不同,該系統使用磁浮和線性馬達在建築物內垂直和水平移動電梯轎廂。沒有繩索使得建築設計更加靈活,允許電梯同時到達多個樓層並減少等待時間。線性馬達部分透過精確控制加速和減速來增強這項技術,從而實現平穩、安靜的行駛。此外,該系統的能源效率有助於實現永續性目標,因為與傳統電梯相比,它最大限度地減少了能源消耗。
智慧控制系統產業預計在預測期內複合年成長率最高
預計智慧控制系統領域將在預測期內快速成長。這些電梯利用磁浮和先進的控制演算法,可以在建築物內垂直和水平移動。智慧技術的整合可實現即時監控、能源效率和改善的使用者體驗。透過利用物聯網連接,這些系統可以預測維護需求、最佳化效能並透過行動應用程式提供無縫互動。這項創新不僅最大化了建築物內的空間,而且還提高了可及性並減少了等待時間。無線電梯可以同時服務多個樓層,正在成為現代建築設計的重要組成部分,有助於提高城市環境的靈活性和效率。
預計歐洲地區將在整個估計期間佔據最大的市場佔有率。隨著都市區變得越來越擁擠,節能解決方案成為當務之急,無線電梯為傳統系統提供了創新的替代方案。這些電梯利用磁浮且不依賴電纜運行,可降低能耗並提高建築物內的空間效率。歐洲法規正在推廣綠色技術並鼓勵開發商投資永續基礎設施。此外,大眾對環境問題的認知不斷提高,也推動了對綠色建築解決方案的需求。無線電梯不僅最大限度地減少了與電梯運作相關的碳排放,而且還使全部區域的建築設計更加多樣化。
據估計,歐洲地區在預測期內的複合年成長率最高。隨著都市化進程的加快,歐洲各地的法規結構正在優先考慮減少碳排放和最佳化密集城市環境中的空間的創新。無線電梯採用磁浮技術,節能且可垂直和水平移動,使其成為現代建築設計的理想選擇。此外,歐盟的綠色新政和嚴格的建築規範鼓勵根據環境目標整合先進技術。這項監管推動不僅鼓勵對最先進的電梯系統的投資,而且推動製造商進一步創新,同時確保遵守安全和環境標準。
According to Stratistics MRC, the Global Ropeless Elevator Market is accounted for $155.6 million in 2024 and is expected to reach $363.7 million by 2030 growing at a CAGR of 15.2% during the forecast period. A ropeless elevator, also known as a vertical transportation system, is an innovative lift design that eliminates traditional cables and pulleys. Instead, it employs magnetic levitation technology, allowing the elevator car to move both vertically and horizontally within a building. This system enhances architectural flexibility, enabling more efficient use of space by allowing elevators to be installed in areas that would be impractical for conventional models. Additionally, ropeless elevators enhance energy efficiency, as they consume less power compared to conventional systems. Maintenance costs can also be lower due to fewer moving parts and less wear and tear.
According to the World Health Organization (WHO), the total population of the world above the age of 60 is anticipated to double to 22% from 12% from 2015 to 2050.
Growing emphasis on sustainable building practices
The Ropeless Elevator represents a significant advancement in sustainable building practices, driven by the need for energy-efficient transportation systems in high-rise structures. Unlike traditional elevators that rely on cables, ropeless elevators utilize magnetic levitation technology, allowing them to move both vertically and horizontally. This innovation not only reduces the energy consumption associated with traditional elevators but also optimizes building space by eliminating the need for large machinery rooms. Furthermore, ropeless elevators enhance design flexibility, enabling architects to create more open and dynamic building layouts.
Aesthetic concerns
The Ropeless Elevator, while innovative in its potential to revolutionize vertical transportation, faces significant aesthetic concerns that hinder its widespread adoption. Traditional elevators rely on visible cables and pulleys, which some argue contribute to a familiar and reassuring design in architectural spaces. In contrast, the Ropeless Elevator's sleek, minimalist appearance might clash with certain architectural styles, leading to concerns about visual disruption in both interior and exterior environments. However, the technology's integration into existing buildings poses challenges; retrofitting older structures to accommodate this system could compromise their historical aesthetic.
Increasing demand for innovative vertical transportation solutions
The rising demand for innovative vertical transportation solutions is significantly boosting interest in ropeless elevators, a technology that revolutionizes how we navigate vertical spaces. Unlike traditional elevators that rely on ropes and pulleys, ropeless elevators utilize magnetic levitation and linear motor systems, allowing for multidirectional movement. This design enables cars to travel both vertically and horizontally, optimizing space and improving accessibility in modern buildings. As urban areas become denser, the need for efficient transportation systems grows, making ropeless elevators an attractive option for skyscrapers, transit hubs, and smart cities. Their energy efficiency and reduced maintenance costs further enhance their appeal, aligning with sustainability goals.
Regulatory challenges
The development of ropeless elevators, which utilize magnetic levitation technology for vertical transportation, faces significant regulatory challenges that impede their widespread adoption. Traditional elevator systems are governed by stringent safety codes and standards, established over decades to ensure passenger safety and reliability. Ropeless elevators, with their innovative design and operation principles, must navigate a complex landscape of regulations that often do not account for their unique technology. This includes challenges in building codes, safety certifications, and compliance with local and international standards. However, the lack of precedent can lead to lengthy approval processes as regulatory bodies assess the technology's safety and efficacy.
The COVID-19 pandemic significantly impacted the development and adoption of ropeless elevator technology, which offers a novel approach to vertical transportation. As urban areas faced lockdowns and social distancing measures, the demand for innovative solutions in building design surged. Ropeless elevators, which use magnetic levitation to move both vertically and horizontally, promise to enhance space efficiency and reduce wait times, making them particularly appealing for high-density environments. However, supply chain disruptions and economic uncertainty slowed investment and deployment. As cities begin to recover, the focus on sustainable and efficient infrastructure is likely to reignite interest in ropeless elevators, positioning them as a forward-thinking solution for modern urban challenges.
The Linear Motor segment is expected to be the largest during the forecast period
Linear Motor segment is expected to dominate the largest share over the estimated period. The Ropeless Elevator, a groundbreaking innovation in vertical transportation, leverages linear motor technology to redefine efficiency and design in building infrastructure. Unlike traditional elevators that rely on cables and pulleys, this system utilizes magnetic levitation and linear motors to move elevator cars both vertically and horizontally within a building. The absence of ropes allows for more flexible architectural designs, enabling elevators to access multiple floors simultaneously and reduce wait times. The linear motor segment enhances this technology by providing precise control over acceleration and deceleration, ensuring smooth and quiet rides. Additionally, the system's energy efficiency contributes to sustainability goals, as it minimizes energy consumption compared to conventional elevators.
The Smart Control Systems segment is expected to have the highest CAGR during the forecast period
Smart Control Systems segment is estimated to grow at a rapid pace during the forecast period. Utilizing magnetic levitation and advanced control algorithms, these elevators can move both vertically and horizontally within a building. The integration of smart technologies allows for real-time monitoring, energy efficiency, and enhanced user experiences. By leveraging IoT connectivity, these systems can predict maintenance needs, optimize performance, and provide seamless interaction through mobile applications. This innovation not only maximizes space within buildings but also improves accessibility and reduces wait times. With the ability to service multiple floors simultaneously, ropeless elevators are becoming a key component in modern architectural designs, promoting greater flexibility and efficiency in urban environments.
Europe region is poised to hold the largest share of the market throughout the extrapolated period. As urban areas become increasingly crowded and energy-efficient solutions are prioritized, ropeless elevators offer an innovative alternative to traditional systems. These elevators, which operate using magnetic levitation and do not rely on cables, reduce energy consumption and enhance space efficiency in buildings. European regulations are pushing for greener technologies, prompting developers to invest in sustainable infrastructure. Moreover, the growing public awareness of environmental issues is driving demand for eco-friendly construction solutions. Ropeless elevators not only minimize the carbon footprint associated with elevator operation but also allow for more versatile architectural designs across the region.
Europe region is estimated to witness the highest CAGR during the projected time frame. As urbanization continues to rise, regulatory frameworks across Europe are increasingly prioritizing innovations that reduce carbon footprints and optimize space in dense urban environments. Ropeless elevators, which utilize magnetic levitation technology, are more energy-efficient and can travel both vertically and horizontally, making them ideal for modern architectural designs. Additionally, the European Union's Green Deal and stringent building codes encourage the integration of advanced technologies that align with environmental goals. This regulatory push not only fosters investment in cutting-edge elevator systems but also drives manufacturers to innovate further, ensuring compliance with safety and environmental standards.
Key players in the market
Some of the key players in Ropeless Elevator market include Aritco Group, Baldor Electric Company, Cibes Lift Group, Hitachi, Ltd, Hyundai Elevator Co., Ltd, Kone Corporation, Mitsubishi Electric Corporation, Otis Elevator Company, Pneumatic Vacuum Elevators LLC, SAVARIA Corporation, Schneider Electric, Thyssenkrupp Elevator AG and Wittur Holding GmbH.
In October 2024, Schneider Electric Launches Secure Power Solutions for Customer Needs at Partner Event. Global leader in energy management and automation, at a Secure Power partner event, introduced new energy solutions, set to provide reliable power solutions to diverse customer segments. The event, which brought together key partners; distributors and resellers, highlighted Schneider Electric's commitment to empowering its partners and meeting the growing needs of customers across West Africa.
In August 2023, Atlanta-based TK Elevator, formerly known as ThyssenKrupp Elevator, launched the world's first ropeless elevator called MULTI. It replaces traditional ropes with linear drive technology to help several cars move both vertically and horizontally. MULTI was installed in TKE Testturm tower, Germany.