原标题:Space Force Grants SpaceX Architectural Design Authority for $2.29 Billion Space Data Network Backbone
美太空军确认允许SpaceX自行确定22.9亿美元太空数据网络骨干(SDN-B)的卫星数量与星座架构,政府仅提出轨道覆盖、网络容量、并发用户与吞吐量等性能指标。该合同源于2026年5月26日太空系统司令部授予的OTA订单,将采用激光星间链路构建低轨光互联传输层。
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On Sept. 15, 2026, U.S. Space Force officials confirmed that the service is allowing SpaceX to define the satellite count and constellation architecture for the $2.29 billion Space Data Network Backbone (SDN-B) rather than prescribing fixed spacecraft quantities.
Speaking at an industry defense conference, Col. Ryan Frazier, acting Portfolio Acquisition Executive for Space-Based Sensing and Targeting, explained that the government set high-level performance specifications for orbital coverage, network capacity, concurrent user capacity, and data throughput, leaving vehicle design and orbital plane distribution to SpaceX.
Contractual History and Program Context
The Space Data Network Backbone stems from an Other Transaction Authority (OTA) delivery order awarded by Space Systems Command to SpaceX on May 26, 2026. The $2.29 billion firm-fixed-price agreement evolved from earlier national security space studies and joint program concepts previously referred to as MILNET.
Under the SDN architecture framework, the system is designed to serve as an optically interconnected low Earth orbit (LEO) data transport layer for the Department of War. While legacy defense space procurements relied on detailed government specifications detailing exact satellite mass, power budgets, and constellation counts, the SDN-B strategy delegates structural satellite decisions to commercial industry.
The transport network operates alongside the Space Development Agency’s Transport Layer, establishing a global, high-throughput, low-latency mesh network in space. The combined layer is structured to route tactical targeting data, environmental intelligence, and command communications between military sensors and operational forces.
Network Architecture and Performance Specifications
Rather than dictating specific satellite bus parameters, the Space Force’s performance-based approach mandates system-level operational capabilities across the orbital transport layer.
The SDN-B network utilizes an optically interconnected mesh of low Earth orbit satellites operating with laser communication terminals. This design allows data packets to hop across orbital planes without relying on intermediate ground relays, maintaining security and low transmission latency.
SpaceX’s implementation leverages commercial satellite manufacturing techniques derived from its Starlink and government-hardened Starshield platform architectures. The government-owned, contractor-operated framework allows the Space For…