Google、SpaceX以及众多初创公司都在计划在太空建设数据中心。但要让这些计划奏效,它们需要电力。而且需要大量的电力。
Google, SpaceX, and a host of startups are all planning to build data centers in space. But for those plans to work, they’ll need power. Lots of it.
总部位于佛罗里达州杰克逊维尔的初创公司Star Catcher旨在通过聚集太阳能并利用激光将其传输至卫星待命的太阳能电池板来提供电力。该公司正准备本周搭乘SpaceX火箭发射其原型系统,该系统将在轨道上向另一颗卫星传输能量。
Star Catcher, a startup based in Jacksonville, Florida, aims to provide it by concentrating the sun’s energy and using lasers to beam it to satellites’ waiting solar panels. The company is preparing to launch its prototype system aboard a SpaceX rocket this week that will transmit energy to another satellite in orbit.
如果成功,这将是激光首次在太空中两个非系留物体之间传输能量。但在太空发电的想法可以追溯到几十年前。
If it’s successful, it would be the first time lasers have beamed energy between two untethered objects in space. But the idea of generating solar power in space goes back decades.
这一概念出现在艾萨克·阿西莫夫1941年的一篇科幻小说中,NASA在1970年代也对其进行过研究。马克斯·普朗克光科学研究所的研究员哈尼耶·法塔希表示:“将大量硬件发射入轨极其昂贵,因此在太空发电并传输到其他地方很少具有实际意义。”但现在,发射成本的下降使得拥有能够提供此类能量的轨道产业变得更加可行。
It showed up in a 1941 sci-fi piece by Isaac Asimov, and NASA studied it in the 1970s. “Launching large amounts of hardware into orbit was extremely expensive, so generating power in space and transmitting it elsewhere rarely made practical sense,” says Hanieh Fattahi, a researcher at the Max Planck Institute for the Science of Light. But now, falling launch costs are making it more feasible to have orbital industries that will be able to provide such energy.
“太空中没有电网,”首席执行官兼联合创始人安德鲁·拉什表示。“大家只是进行这些小型的‘露营之旅’。”Star Catcher的解决方案是一组被称为“电力节点”的阵列,它们既充当太阳能发电厂,也充当输电线路。为了发电,该公司的卫星利用一组透镜收集阳光,并将其提炼成Star Catcher称可提供比漫射阳光多达10倍功率的光波长。随后,它发射一束激光——可将其视为一根虚无缥缈的传输电缆——可指向需要电力的卫星。这将带来更长的运行时间,拉什表示,也将为卫星运营商带来更多利润。
“There isn't a power grid in space,” says chief executive officer and cofounder Andrew Rush. “Everybody just goes on these little camping trips.” Star Catcher’s solution is an array of what it calls power nodes that serve as both a solar power plant and power line. To generate energy, the firm’s satellites gather sunlight using a collection of lenses and refine it into the wavelengths of light that Star Catcher says can provide up to 10 times more power than diffuse sunlight. It then emits a laser beam—think of it as an ethereal transmission cable—that can be directed at satellites in need of power. That promises more uptime and, Rush says, more profit for satellite operators.
在发射成本高达每公斤数千美元的世界里,减小电池体积的同时增加更多有用仪器——或者在太空数据中心的情况下增加 GPU——都能带来可观回报。
In a world where launches cost thousands of dollars per kilogram of weight, reducing battery size while adding more useful instruments—or in the case of space data centers, GPUs—can pay dividends.
市场对 Star Catcher 提供的服务表现出浓厚兴趣。该公司今年早些时候宣布完成 6500 万美元融资,并获得美国太空军 3000 万美元订单。公司还与潜在买家签署了 40 份意向书,更重要的是签署了 10 份电力购买协议,这些都是长期合同。同乘一枚 SpaceX 火箭发射的还有谷歌首个太空数据中心尝试项目,这也是太空产业前景看好的一个信号。
There’s clear interest in what Star Catcher is offering. The company announced a $65 million round of funding earlier this year, and it won a $30 million award from the US Space Force. The company has also inked 40 letters of intent from prospective buyers and, more importantly, 10 power purchase agreements, which are long-term contracts. There’s also a sign of optimism for space-based industries launching on the same SpaceX mission as Star Catcher’s system: Google’s first attempt at a space-based data center is also hitching a ride on the rocket.
本周发射的这颗名为“原星”的卫星,是 Star Catcher 最终计划部署卫星的小型验证版。首席执行官 Rush 表示,这些卫星将“在本十年末前提供有意义的商业在轨供电服务”。但这将是整个系统首次在太空中集成运行,公司将利用其跟踪技术向同步发射的一颗非系留立方星传输能量。
The satellite launching this week, dubbed Protostar, is a small-scale version of the satellites Star Catcher hopes to eventually deploy that Rush says will provide “meaningful commercial power provisioning services in orbit before the end of the decade.” But it’ll be the first time the entire system comes together in space, with the company using its tracking technology to beam energy to an untethered cubesat that’s launching at the same time.
Rush 表示:“此次演示的部分内容是测试立方星在远离‘原星’过程中接收到的功率,并将其与我们的模型进行对比。”
“Part of this demonstration is testing how much power is received by the cubesat as it moves away from Protostar and comparing that against our models,” says Rush.
该公司已在太空环境下测试了其跟踪并向目标卫星传输能量的技术,并在去年创造了地面定向能传输功率纪录,打破了此前由 DARPA 保持的纪录。
The company has done a space-based test of its technology that would allow it to track satellites it’s transmitting energy to, and it set a record last year for beaming power on the ground, besting a mark set by DARPA.
那次测试向现成的太阳能电池板输送了超过 1 千瓦的电力——足以驱动一台微波炉。这意味着要为电信卫星供电还有很长的路要走,更别提空间数据中心了,但拉什表示,地面上的概念验证让他有信心,认为公司已准备好在轨道上一展身手。他说,Star Catcher 仍处于“爬行”阶段,但正朝着走路、再到奔跑的方向迈进。
That test delivered more than 1 kilowatt of power to off-the-shelf solar panels—enough juice to power a microwave. That means there’s a ways to go to power telecommunications satellites, let alone space-based data centers, but Rush says the proof-of-concept on the ground is what gives him confidence that the company is ready to see what it can do in orbit. He says Star Catcher is still in the “crawl” phase but on its way to walking, then running.
这并非太空激光的首次测试。美国海军研究实验室于 2023 年完成了一项实验,运行一台空间激光器发电持续了 100 天。然而,该系统是一个单一单元,激光束传输距离不足 5 英尺(约 1.5 米)。(如果 Star Catcher 正在练习爬行,那这个实验就好比趴着练抬头。)该激光器的效率仅为 11%,法塔希表示这是一个必须克服的问题。她还指出,跟踪系统、热管理,以及确保设备能在太空寒冷真空环境中运行多年,这些问题也都需要逐一解决,才能让空间激光在经济上具有可行性。
This won’t be the first test of lasers in space. The Naval Research Laboratory completed an experiment in 2023, operating a space laser to generate power for 100 days. However, the system was a single unit, and the beam traveled less than 5 feet. (If Star Catcher is working on crawling, then this experiment was akin to tummy time.) That laser only operated with 11 percent efficiency, an issue Fattahi says will need to be overcome. She also says tracking systems, managing heat, and ensuring equipment can operate in the cold vacuum of space for years also need to be teased out to make space-based lasers economically viable.
研究人员还探索了其他形式的空间太阳能,包括加州理工学院科学家成功测试通过微波将太阳能传回地球。这种技术能传输更多能量,但需要巨大的接收装置来收集,而激光则能瞄准小得多的目标。
Researchers have also explored other forms of space-based solar, including successful tests by Caltech scientists to transmit solar power via microwaves back to Earth. That technique can transmit more energy, but it requires a massive receiver to harness it, whereas lasers can hit a much smaller target.
“随着我们在太空建设基础设施,”拉什谈到 Star Catcher 的卫星时说,“我们开始让在太空部署更大规模、更有能力的产业变得更具经济性。我认为我们正在构建的东西,对航天领域的变革性影响不亚于可重复使用的运载火箭。”
“As we grow the infrastructure in space,” Rush says of Star Catcher’s satellites, “we begin to make it more economical to put larger and more capable industry in space. I view what we're building as transformational for the space sector as reusable launch vehicles.”