Let's not lose sight of the original problem, which is to avoid a concentration of power, where a few people control most of AI and thus the world. Unfortunately, wealth and power have had a power law distribution (the exponential of a Normal bell curve) since the time of Caesar and King Tut. It is a basic fact of economics that wealth depends on a product of lots of small bets, which is the sum of their logarithms. By the central limit theorem, this gives the result that the richest 1% of the population have half of the world's wealth. This has been the case for millinea. The usual method to solve this is to tax the rich and give to the poor, but that slows economic growth and makes everyone poorer.
For AI built on human knowledge, we need to ensure that everyone has a voice. This requires an uncensored communication network. AI has the ability to model human behavior and therefore control you by feeding you what you think you want to hear, while actually feeding you what its owners want you to hear. I am not sure how to stop this. At least the protocols already exist. WiFi was originally designed to allow direct communication between phones or computers independent of the internet. But an early bug that caused WiFi to crash or drastically slow down when used this way after about a week, requiring a reboot, due to a 32 bit timer overflow that wasn't found and fixed until years later, after Bluetooth was developed as a substitute. In any case, the obstacle isn't the communication technology. I am looking for ideas. How do we stop AI from killing us by giving us everything we want? -- Matt Mahoney, [email protected] On Sat, Aug 29, 2026, 8:54 AM Quan Tesla <[email protected]> wrote: > Now for something completely different. LLMs bring the promise of novel > communication technologies. > > For example, I recently proposed a concept design for a non-GPS, cubist > proprietary dead reckoning AI-enabled nodal network. Its intended purpose > was to securely and safely identify, track and potentially communicate with > and track UAPs (all craft?), including for securing 'human-in-the-loop' > observers and all equipment and data. A pretty cool wearable harness to > have. Unfortunately, the organization the conceptual rationale and layout > was submitted to declined the proposal. > > For this product, each "data-center" node would be portable and could be > man-packed with hot-swappable batteries, acts independently, and may > accurately position itself and track all observed phenomena (collecting and > classifying data locally). Lots of AI automation. > > It would communicate via AI-synced hopper radio waves. All nodes use the > exact same mapping schema and functional setup, except, they can auto > detect each other and set up a nodal network via the proper protocols. All > nodes within the network would handover observational and tracking data to > associated sectoral nodes for high-fidelity processing and positioning. It > could also securely communicate between nodes and 'human-in-the-loop' > configurations. > > In this sense, this type of network would be able to operate as an > extendable Internet covering from low-orbit comms (ISS and satellites and > other craft), for all aerial activity including stealth craft, and under > the water comms as well. As a discrete IoD (Internet on Demand) solution > for the future, this may be something to think about. > > > On Sat, Aug 29, 2026 at 11:41 AM John Rose via AGI <[email protected]> > wrote: > >> On Thursday, August 27, 2026, at 3:45 PM, Matt Mahoney wrote: >> >> Running a P2P network today would be vastly more difficult. Not only do >> you not have access to your phone's firewall or IP address, but any app has >> to be approved by Google or Apple. Even if they allowed it, a server would >> quickly deplete your data limits and battery. Almost everyone who owns any >> crypto today depends on a server owned by someone else to manage >> transactions and often their private keys, even after massive frauds like >> Mt. Gox and FTX. >> >> >> Typically in P2P there are different types of nodes with some hierarchy. >> Some node types are always running. Mobile phones are more on demand. A few >> years ago I developed one of those VoIP apps that can receive inbound IP >> voice calls even if the app is not running and changing it’s IP address >> frequently. VoIP has a special priority on mobile devices but most apps >> have networks they utilize like Apple APNS and Google FCM for push >> messages. ID tokens are used for push. Then there is STUN, TURN and ICE for >> firewall and IP address issues and keepalives outside of push. Even though >> SIP is imperfect to say the least it’s the wide standard and can be used to >> transmit non-media data streams. There is some fancy stuff being done on >> mobile devices now. But background apps are mostly shut off waiting for an >> event and minimal interaction is permitted so continuously running server >> nodes are needed for P2P if the network goes to zero peers unless you use >> some alternative mechanism. >> > *Artificial General Intelligence List <https://agi.topicbox.com/latest>* > / AGI / see discussions <https://agi.topicbox.com/groups/agi> + > participants <https://agi.topicbox.com/groups/agi/members> + > delivery options <https://agi.topicbox.com/groups/agi/subscription> > Permalink > <https://agi.topicbox.com/groups/agi/T08974f0b616697ac-M3cccaa40733aee8ec606e50f> > ------------------------------------------ Artificial General Intelligence List: AGI Permalink: https://agi.topicbox.com/groups/agi/T08974f0b616697ac-M73700a96bc73b4d478fa1493 Delivery options: https://agi.topicbox.com/groups/agi/subscription
