logo
Chinese Product Designer Yihan Luo Showcased 'Pikapoo' at Milan Design Week 2025

Chinese Product Designer Yihan Luo Showcased 'Pikapoo' at Milan Design Week 2025

By Hina Dinoo
Her award-winning autonomous pet waste system, Pikapoo, was featured at Tortona Design Week as part of Milan Design Week 2025 under the theme 'Design rEvolution: Creative Connections.'
Chinese product designer Yihan Luo recently presented her groundbreaking robotic system Pikapoo at the 2025 edition of Milan Design Week, the world's most influential design event. Her project was exhibited within the Tortona Design Week district—one of the festival's key venues—under the curatorial theme 'Design rEvolution: Creative Connections.' The showcase highlighted innovative design responses to contemporary social and environmental challenges, and Luo's project stood out for its integration of sustainable technology, user-centered design, and urban health awareness.
Held from April 7 to 13, 2025, Tortona Design Week transformed Milan's Tortona district into a dynamic laboratory of creativity, innovation, and research. Under the theme 'Design rEvolution: Creative Connections,' the event celebrated the power of connections in the design world, bringing together disciplines, ideas, and visions to create a week of discoveries and inspiration.
The district hosted a diverse array of exhibitions and installations, focusing on smart materials, sustainable infrastructures, and designs that engage the senses. International brands and designers converged to explore new perspectives on contemporary design, fostering a dialogue that merges aesthetics, technology, and functionality.
Conceived during China's COVID-19 lockdown, Pikapoo emerged from Luo's observations of widespread pet waste on neighborhood lawns and her user research into pet owner behaviors. Many respondents mistakenly believed that dog feces acted as natural fertilizer. In truth, dog waste contains bacteria harmful to vegetation and public health. Existing cleanup tools offered little innovation—often requiring direct contact and lacking eco-friendly disposal methods.
In response, Luo developed Pikapoo , an autonomous robotic pet waste management system that combines product design, interaction design, and service design. The system includes a mobile app-controlled robot ( Poobot ) that identifies and collects waste, and a companion unit ( Poobase ) that composts it into fertilizer using biological catalysts. The system also offers health diagnostics by analyzing samples, providing pet owners with medical insights via the app.
Following its debut as her graduation project, Pikapoo quickly garnered widespread attention. Luo collaborated with an engineer to further refine the design before submitting it to international competitions. The project won multiple honors, including the 2025 iF Design Award (Robotics), the IDA Design Award, and the 2025 French Design Award, recognizing both its functionality and environmental relevance. These accolades helped secure its selection for exhibition at Milan Design Week 2025—a key milestone in Luo's early career.
At the Tortona venue, Pikapoo was exhibited alongside other future-facing solutions focused on urban sustainability and smart interaction. Visitors experienced a live demonstration of the robot's capabilities, the composting cycle, and health reporting features, illustrating the full lifecycle of how waste can be transformed into insight and utility. The installation embodied Tortona's mission to highlight 'connected design' that merges aesthetics, responsibility, and technology.
About the Designer
Yihan Luo is an interaction and product designer known for her ability to merge sustainability, social impact, and emerging technologies. Educated at ArtCenter College of Design and the University of Southern California, Luo's design philosophy is rooted in bridging physical systems with digital user experiences. Her work addresses overlooked problems—like uncollected dog waste—and reimagines them as opportunities for environmental and social innovation.
Her participation in Milan Design Week 2025 signals a growing international recognition of Chinese designers engaging with global issues through deeply considered, human-centered approaches. As she continues to develop solutions at the intersection of robotics, ecology, and user behavior, Luo is poised to become a leading voice in next-generation design thinking.
Did you like it? 4.5/5 (22)
Orange background

Try Our AI Features

Explore what Daily8 AI can do for you:

Comments

No comments yet...

Related Articles

'We Proved the Doubters Wrong': Envision Energy's 500-Day Two-Blade Wind Turbine Shakes Up Industry With Fewer Parts and Unmatched 99.3 Percent Reliability
'We Proved the Doubters Wrong': Envision Energy's 500-Day Two-Blade Wind Turbine Shakes Up Industry With Fewer Parts and Unmatched 99.3 Percent Reliability

Sustainability Times

time5 days ago

  • Sustainability Times

'We Proved the Doubters Wrong': Envision Energy's 500-Day Two-Blade Wind Turbine Shakes Up Industry With Fewer Parts and Unmatched 99.3 Percent Reliability

IN A NUTSHELL 🌟 Envision Energy achieves a breakthrough with its two-blade wind turbine prototype, completing 500 days of stable operation. achieves a breakthrough with its two-blade wind turbine prototype, completing 500 days of stable operation. 🔧 The turbine incorporates a modular design and high-speed DFIG technology for enhanced stability and performance. for enhanced stability and performance. 🌍 The design offers practical advantages like fewer components and improved transportability, ideal for remote regions. 🚀 Envision's innovation could redefine the future of wind energy, paving the way for broader adoption of two-blade systems. Envision Energy, a leading name in clean technology, has achieved a remarkable milestone with its two-blade wind turbine prototype. Based on their innovative Model X platform, this turbine has successfully completed over 500 days of stable operation. This achievement not only showcases the turbine's reliability but also signals a significant shift in wind energy technology. With an impressive availability rate of 99.3 percent, Envision Energy is poised to redefine the standards of wind turbine efficiency. Innovative Design And Technology Envision Energy's two-blade wind turbine is the culmination of over a decade of dedicated research and refinement. Built on the Model X platform, this turbine incorporates a modular design that prioritizes both performance and system-wide efficiency. The inclusion of high-speed DFIG (Doubly-Fed Induction Generator) technology further enhances its stability, making it a robust solution for various green power applications. The lightweight design of the turbine ensures its adaptability to different environmental conditions. Field tests have confirmed its commercial readiness, demonstrating consistent performance even in demanding situations. This achievement is expected to renew interest in two-blade turbines, which have historically faced structural challenges. Envision's innovative approach has successfully addressed these issues, positioning the company as a pioneer in wind power innovation. The groundwork for this breakthrough was laid in 2012 at Envision Energy's Global Innovation Center in Denmark. The development of the 3.6 MW offshore two-blade turbine, known as the Game Changer, served as a precursor to the current success. This journey of innovation underscores Envision Energy's commitment to advancing clean energy technologies. 'Like a Human Hand' as New Robot Tech Can Sense Slippage Before It Happens Fueling Fears of Machines Gaining Touch as Precise as People Comprehensive Testing And Validation The prototype underwent extensive testing and nearly two years of real-world operation at Envision Energy's smart wind power verification center. The testing included the use of a unique multi-degree-of-freedom loading rig, allowing engineers to simulate various operational conditions. This rigorous testing regime ensured that the turbine's performance and stability were thoroughly validated. Lou Yimin, the senior vice president and chief production officer of Envision, highlighted the overcoming of key technical challenges such as excessive system vibration and load imbalance. These advancements have allowed Envision to redefine wind power innovation, becoming the first in the industry to demonstrate long-term operational verification of a next-generation two-blade turbine. The systematic planning and validation of all parameters ensured that the technology was mature and ready for commercial deployment. This design offers practical advantages, including fewer components, lower weight, and enhanced transportability. These features make it a viable option in markets that require modular deployment, potentially reducing costs and logistical challenges. 'They Want to Rewrite Nature With Cement': CO₂-Eating Buildings Backed by Elites While Workers and Architects Call It a Dangerous Scam Potential Impact On The Energy Sector Envision Energy's breakthrough in two-blade turbine technology has significant implications for the energy sector. By providing a reliable and efficient alternative to traditional three-blade systems, Envision is paving the way for broader adoption of two-blade turbines. This technology could be particularly beneficial in remote or developing regions where infrastructure constraints make the use of bulkier systems challenging. The success of this prototype reaffirms Envision's leadership in global wind innovation. The company's commitment to accelerating the transition to net-zero emissions through next-generation clean energy technologies is evident in this achievement. As the world seeks sustainable energy solutions, Envision's advancements could play a crucial role in meeting global energy demands. By offering a practical and efficient alternative, Envision Energy is not only contributing to the renewable energy landscape but also setting new standards for turbine technology. This innovation has the potential to transform how wind energy is harnessed and utilized across the globe. 'Terrifying Tech Leap' as Live Cockroaches Are Turned Into Remote-Controlled Robot Swarms for Future Spy Missions Funded by Millions in Defense Cash Future Prospects And Challenges The successful deployment of Envision Energy's two-blade wind turbine prototype marks a pivotal moment in wind energy technology. However, the journey toward widespread adoption is not without challenges. The company must navigate regulatory frameworks, market dynamics, and competitive pressures to ensure the technology's success. As Envision continues to refine its two-blade design, the potential for further innovations remains high. The company's focus on reducing costs and improving efficiency aligns with the broader goals of sustainability and environmental responsibility. Future developments could include enhancements in turbine materials, control systems, and grid integration capabilities. The road ahead for Envision Energy is filled with opportunities and challenges. The company's ability to adapt and innovate will be crucial in shaping the future of wind energy. As the world embraces renewable energy sources, the question remains: how will technological advancements in wind power influence global energy strategies? This article is based on verified sources and supported by editorial technologies. Did you like it? 4.5/5 (24)

"China's Self-Cleaning Glass Just Made American Windows Obsolete": Revolutionary Electric Fields Clear Dust With Zero Effort
"China's Self-Cleaning Glass Just Made American Windows Obsolete": Revolutionary Electric Fields Clear Dust With Zero Effort

Sustainability Times

time7 days ago

  • Sustainability Times

"China's Self-Cleaning Glass Just Made American Windows Obsolete": Revolutionary Electric Fields Clear Dust With Zero Effort

IN A NUTSHELL ✨ Scientists at Zhejiang University have developed a new type of self-cleaning glass using electric fields. using electric fields. 🔍 The glass can remove up to 98% of particles without water or chemicals, using minimal energy. can remove up to 98% of particles without water or chemicals, using minimal energy. 🌿 It not only cleans but also prevents new dust from settling, offering a sustainable solution for various industries. 🏢 Potential applications include solar panels, car windshields, and skyscraper windows, where clear visibility is crucial. The world of innovation continues to surprise us with groundbreaking advancements. A team of scientists at Zhejiang University in Eastern China has developed a revolutionary self-cleaning glass that could transform the way we maintain surfaces. This glass, embedded with electrodes driven by electric fields, can remove dust particles in seconds, without the need for water or chemicals. It offers a sustainable solution to a pervasive problem, potentially reducing the time, effort, and cost associated with cleaning surfaces like windows and solar panels. This technological leap raises intriguing questions about the future of glass maintenance and its impact on industries reliant on clear, clean surfaces. Revolutionary Self-Cleaning Technology The development of electric-field-driven self-cleaning glass marks a significant innovation in surface maintenance technology. Traditional cleaning methods often struggle in dry, dusty environments and require frequent maintenance. In contrast, this new approach utilizes electric fields to move and detach particles from the glass surface. This technology is akin to electrodynamic screens, which have already shown promise in extraterrestrial applications, such as dust removal on Mars rovers. However, past efforts have been hampered by a limited understanding of the mechanics involved in particle movement and detachment. By delving into the interplay between particle size and electric field strength, the Chinese researchers have crafted a thin, transparent glass that effectively cleans both organic and inorganic particles without manual intervention. This advance not only simplifies maintenance but also holds potential for a wide range of applications. China Stuns Aviation World With 2-Ton eVTOL as Expert Declares 'This Is the Death of the Helicopter Era' Dual Benefits: Cleaning and Prevention Beyond its impressive cleaning capabilities, the self-cleaning glass also offers preventive benefits. When activated, the electric field repels airborne charged particles, reducing the accumulation of dust on the glass surface. This 'particle shielding effect' significantly limits dust buildup, even in challenging environments such as sandstorms or dusty weather conditions. The glass's transparency makes it ideal for applications where clear visibility is crucial. It minimally impacts visible light transmission, with most light loss occurring in the infrared spectrum. This characteristic makes it particularly suitable for solar panels, car windshields, greenhouse roofs, and high-rise building windows. The potential to maintain clarity and energy efficiency with minimal intervention is a game-changer for these sectors. 'They Want to Rewrite Nature With Cement': CO₂-Eating Buildings Backed by Elites While Workers and Architects Call It a Dangerous Scam Practical and Scalable Design The practicality of this new self-cleaning glass extends beyond its functionality. The design process involves etching electrodes onto a glass sheet and covering them with a protective film, utilizing common materials and established manufacturing methods. This compatibility with current industrial practices ensures that the glass can be produced efficiently and at scale, without the need for costly or specialized equipment. The study, published in the journal Advanced Science, highlights the ease with which this glass can be integrated into existing production lines. Its simplicity and cost-effectiveness make it an attractive option for industries that prioritize both innovation and sustainability. By reducing the reliance on water and chemicals, this technology not only offers an environmentally friendly solution but also aligns with the growing demand for sustainable practices. Artificial Cell Sparks Controversy as It Moves Without Motors Using 'Pure Chemistry Alone' in What Scientists Call a Dangerous Leap Toward Synthetic Life Potential Impact Across Industries The implications of this innovative glass technology extend across various industries. For solar panel manufacturers, it offers a way to maintain panel efficiency by keeping surfaces clean and free of dust, potentially increasing energy yield. In the automotive industry, self-cleaning windshields could enhance driver safety by ensuring clear visibility in adverse weather conditions. Building maintenance could also benefit significantly, particularly in urban environments where high-rise windows are difficult and costly to clean. By reducing maintenance costs and frequency, building owners could improve operational efficiency and sustainability. As industries grapple with the challenges of maintaining clean, clear surfaces, this technology provides a promising and practical solution. As we consider the potential applications and benefits of this self-cleaning glass, one question remains: How will industries adapt to integrate this technology, and what further innovations might it inspire in the pursuit of sustainable and efficient surface maintenance? This article is based on verified sources and supported by editorial technologies. Did you like it? 4.5/5 (26)

Czech driverless train hits open track
Czech driverless train hits open track

France 24

time05-08-2025

  • France 24

Czech driverless train hits open track

The train named Edita has been running since April on a local railway used as a testing track by the Prague-based private AZD company producing transport control and signalling systems. "The train runs autonomously, it is equipped with systems that enable us to control its traction, brakes, and speed," said AZD's railway developer Michal Novak. "It is also equipped with a device that detects objects and recognises... obstacles and reacts accordingly," he added. AZD has been running the train sparingly since its launch as its staff often test new equipment on it. Edita connects two small towns on a 24-kilometre (15-mile) track that was abandoned in 2010 before AZD bought it six years later. AZD has invested 320 million Czech koruna ($15 million) in the project, using EU funding for about one-third of the amount. The autonomous train, which has so far driven some 1,700 kilometres (1,060 miles) with passengers, relies on cameras, lasers, satellite navigation and an integrated digital map for information on its whereabouts. Under the current legislation, it still needs a driver to at least supervise its operation. The early Tuesday train's crew also included a conductor and experts checking data. When a hare ran onto the track, Edita duly slowed down and informed the crew about the obstacle. Novak said the train once had to stop because of a herd of sheep in the way, but he added incidents like this were rare. He added Edita was the first driverless train in Europe in an open environment with level crossings and where animals might get in the way. "There are systems where autonomous vehicles operate, but these are mostly on special tracks that are closed off... such as underground or transfers between airport terminals," he said. "These have been in place for quite some time and work well in Europe, but I only know of one project in Australia that operates in such an open landscape," added Novak. Watching the track ahead of the train on a screen in the carriage, passenger Radka Globanova told AFP autonomous trains "definitely have a future". "I think the progress will be really fast as artificial intelligence is being developed. There are autonomous trains, autonomous cars, why not?" © 2025 AFP

DOWNLOAD THE APP

Get Started Now: Download the App

Ready to dive into a world of global content with local flavor? Download Daily8 app today from your preferred app store and start exploring.
app-storeplay-store