It does indeed. However not as much as processing a signal may do. I'll extrapolate further. I worked indirectly with satellite systems back in the late 1990s. You've got two ways of handling satellite data:
1. Uplink/downlink. This is the most primitive and I understand still the most common. You RX, strip the carrier off, mix it with a new carrier, amplify it and send. There is no intelligence other than the uplink and downlink frequencies. Bandwidth of both of these is pretty wide. Ergo, latency is minimal, power efficiency is high. The satellite doesn't have any idea what the signal means.
2. Decode/retransmit. This you need to RX it, strip the carrier out, demodulate it possibly thousands of channels individually spanning a massive bandwidth, intelligently decide what to do with it while buffering it, mix with one of many new carriers, amplify, retransmit. Latency high, power efficiency low.
The latter requires some serious routing power which isn't necessarily available either cost efficiently or reliably of the shelf. Getting something like that which is rad hardened isn't likey to succeed and you can't just launch three redundant core 2's to do it like Dragon.
Imagine launching a radiation hardened 4G base station. That's a good analogy.