Corentin Roudaut, who once felt overwhelmed by Paris's traffic, found renewed confidence in cycling after the establishment of a segregated bike lane on Boulevard Voltaire. He now actively participates in promoting cycling in the city, witnessing a remarkable transformation in urban mobility and safety over the last decade.
"As we prepare for events like the World Cup, MA250, Tall Ships, and for millions of visitors to experience all that Massachusetts has to offer, we want to thank our regular riders that rely on us 365 days a year for your patience and continuing to choose transit during this unprecedented summer."
"This project is symbolic of what we've done over the last 12 years, reshaping the streets and the city," Christophe Najovski, the city's deputy mayor in charge of green spaces, stated during the opening ceremony.
The first three months of 2026 were among the three safest first-three-month periods since records started being kept at the dawn of the Automobile Age, with only 42 fatalities from car crashes in New York City.
It's tempting to frame autonomous driving as a single leap. In public transport, adoption tends to be incremental - because the system is built for reliability, and new capabilities have to fit into daily operations without disrupting service. That is why a practical strategy is evolution, not revolution: introduce autonomy in a defined domain, learn safely in real operations, and expand capability step-by-step.
For more than a decade, autonomous buses have been "almost ready." Demonstrations with safety drivers began around 2015, and ten years later, this is still largely what we see. The reason is not a lack of ambition - it is physics, safety, and economics. Autonomous buses on city streets are inherently difficult. They carry dozens of passengers, operate as heavy vehicles, and move through a chaotic urban environment.
Goiânia has launched a fleet of electric bi-articulated buses in regular passenger service, deploying 21 high-capacity Volvo BZRT vehicles supported by a new dedicated charging hub. The Brazilian city has introduced 16 articulated and 5 bi-articulated battery-electric buses built on the Volvo Buses BZRT chassis and bodied by Marcopolo (Attivi model). The vehicles operate within the RMTC metropolitan public transport network, alongside the inauguration of the Eletroposto Oeste charging facility located at the METROBUS S.A. depot.
The planned order is expected to include 12-meter and 18-meter vehicles, and potentially also 24-meter bi-articulated trolleybuses. All units will be equipped with traction batteries enabling off-wire operation. The new trolleybuses are expected to cover at least 20 kilometers without overhead wires, while remaining fully compatible with Riga's extensive existing trolleybus infrastructure.
The framework covers vehicles powered by hydrogen, battery-electric and diesel technologies, as well as different bus formats including single-deck, double-deck, articulated and 6×2 models. Framework agreements are designed to streamline procurement processes by allowing public buyers to purchase vehicles without conducting a full open tender.