259 karma · joined April 29, 2022
The Solar Impulse/SkyDweller lineage is very inspiring - what an amazing way to demonstrate how much you can do with solar power!
Thanks for the website feedback - for the sake of clarity, our test flights with the sub-scale aircraft have all been at lower altitudes. The stratosphere is the next step and we plan to fly there next summer!
Discussed a few of your questions elsewhere in the comments, but here are some thoughts on scaling laws:
Over-simplifying a bit for the sake of brevity: In general, for larger aircraft structural mass scales up more quickly than wing area (check out “indoor free flight models”). By using a span-loaded structure (i.e. having weight distributed along the wing span to match the way lift is spread over the wing) you can avoid some of these constraints and have an approximately constant structural mass fraction.
The aircraft is actually very quiet - it needs to be very aerodynamically efficient so it doesn't require much thrust. You can’t really hear it in flight, but I’m no audio engineer - so I don't know how useful microphones would be. Genuinely curious about this so if you have any pointers let me know!
Winds will be a bigger issue than energy when climbing. Up at 20 km (70k ft.) winds are quite calm, but we need to ascend through more turbulent winds as we climb. We’re sizing our MVP around this.
We’re using conventional silicon solar cells, rather than the GaAs cells used by Airbus. We give up some efficiency by doing this, but it keeps costs far lower - which we think is key to iterating quickly, and opening up some of the market use cases.
Similarly, we’re sticking with conventional battery chemistries (Lithium Ion). Battery energy density is by far the biggest driver for this technology - in the past decade we’ve seen huge advancements in battery tech, which is one of the reasons this technology is now possible. As you identify, cycle life is a key challenge and what will limit the aircraft’s endurance.
Perhaps unexpectedly, climbing to 20km altitude isn’t too large a problem from an energy perspective. In a typical energy cycle, the aircraft has low battery in the morning, so if we launch with a full battery charge we have plenty of extra energy to climb up to altitude.
Prime Air - definitely a serious project, but I’m sure Amazon didn’t hesitate in milking the PR! Making a reliable drone delivery service at Amazon scales certainly isn’t easy. That team is still going strong and I’m sure we’ll see more from them as they ramp up commercial deliveries.
In terms of coverage, from that altitude, we have good line of sight coverage over large areas. Obviously, satellites can cover wider areas, but it turns out that in most suburban/rural settings the ground footprint becomes limited by the population density and bandwidth available - so the larger satellite footprint is only really useful in extremely remote locations.