⚡️EU countries call to let Ukraine buy American Patriots.
Nine EU countries have co-signed a letter demanding that the bloc allow Kyiv to spend its 90 billion euro ($103 billion) loan on non-European defense equipment such as Patriot missiles, and to do so quickly. “This will help keep Ukraine in the fight and support it in protecting human lives,” the letter reads.
— @KyivIndependent Jul 7, 2026
⚡️BREAKING: Another 2 large Oil Tankers have just been Hit near Oman in the Strait of Hormuz
This brings the total Number of ships struck in the Strait to Four in less than 24 Hours
The Ships were being Escorted by the US Military
— @IranObserver0 Jul 7, 2026
“NATO collective defense is no longer possible without Ukraine,” says Kyiv’s ambassador to the United States. foreignpolicy.com/2026/07/06…
— @ForeignPolicy Jul 7, 2026
#CIA #DIA #Mossad
x.com/mikenov/status/2074491…
Warfare has ceased to be a contest of platforms. It is now a battle of sovereign data sets, where the victor is the one who can best train their algorithms to recognize, maneuver, and kill faster than the opposing code.Michael Novakhov (@mikenov) #AlgorithmicWarfare #Drones #ElectronicWarfare
Algorithmic Warfare: The New Battlefield share.gemini.google/Uvhj9dEL…
The war of smart drones becomes the war of competing, more efficient algorithms used to manage and operate them
share.google/aimode/4Jr57PUC…
Gemini:
You are entirely correct. We have crossed a threshold where the hardware—the airframe, the rotors, the battery—is merely the delivery mechanism. The actual weapon is the algorithm.Through 2024, drone warfare was defined by mass and scale: churning out millions of cheap First-Person View (FPV) drones and training enough human operators to fly them. But by 2025 and into 2026, the sheer volume of drones on the battlefield exposed the hard limits of human cognition and the vulnerabilities of remote piloting.
The conflict has definitively shifted from a war of manufacturing capacity to what military strategists now call algorithmic warfare or machine-speed adaptive hyperwar.
The Death of the Joystick
The transition to algorithmic control wasn’t born out of a desire for sophisticated tech; it was forced by battlefield friction. Two absolute bottlenecks made human-piloted drones unsustainable at the scale modern war demands:
The Electronic Warfare (EW) Wall: In 2025, EW became an omnipresent shield rather than a situational tactic. Human-operated drones require a continuous radio frequency (RF) link. When jamming severs that link, a dumb drone falls out of the sky. An algorithmically driven drone, however, relies on onboard machine vision. Once a target is locked, it doesn’t matter if the RF link is jammed or GPS is spoofed; the onboard AI guides the drone through the final terminal phase autonomously.
Operator Burnout and Scaling Limits: You cannot indefinitely scale human drone teams. Operating an FPV drone in combat is highly cognitive, stressful work. Algorithms solve the human bottleneck. The role of the human is shifting from pilot to tactical manager. A single operator now selects targets and defines deployment parameters, while the algorithm handles the flight path, evasion, and terminal attack of an entire swarm.
Machine-Speed HyperwarWhen algorithms take over, the Observe-Orient-Decide-Act (OODA) loop compresses from minutes to milliseconds. We are already seeing the early stages of this deployment:
Ukraine’s Saker Scout: This system uses machine vision and onboard AI in the final phase of a strike, capable of visually identifying over 60 categories of Russian military equipment and striking without an operator link.
Russian V2U Loitering Munitions: Recent deployments have shown units equipped with advanced processing chips that can autonomously form holding patterns and coordinate attacks on vehicles if they lose their human connection.
The “Autonomy Trap”: The profound risk now is algorithmic escalation. When two competing autonomous systems encounter each other, they react at machine speed. One system detects a threat and initiates a strike before a human commander is even briefed, forcing the adversary’s AI to instantly counter-strike.
To see why militaries are so eager to hand control over to the algorithm, we have to look at how these systems behave under stress compared to a human operator:The Strategic Restructuring
This reality is forcing a massive systemic restructuring of how global militaries fund and organize themselves. The era of treating AI as a quirky tech-startup experiment is over.
Look at the Pentagon. In late 2025, they quietly dissolved the “Replicator Initiative” (which aimed to quickly field thousands of cheap drones) and absorbed it into the Defense Autonomous Warfare Group (DAWG). DAWG isn’t just a working group; the White House requested a staggering $54.6 billion for it in the FY27 budget—a 24,000% increase.
The core philosophy of DAWG represents the exact shift you noted: the hardware doesn’t matter as much as the software. They are focusing on developing sophisticated, adaptable algorithms that can be flashed onto any cheap drone frame to instantly turn it into an autonomous swarm asset.
Warfare has ceased to be a contest of platforms. It is now a battle of sovereign data sets, where the victor is the one who can best train their algorithms to recognize, maneuver, and kill faster than the opposing code.
–
The war of smart drones becomes the war of competing, more efficient algorithms used to manage and operate them
share.google/aimode/4Jr57PUC…— https://x.com/mikenov/status/2074491176607002779— Michael Novakhov (@mikenov) Jul 7, 2026
#AlgorithmicWarfare #Drones #ElectronicWarfare
Algorithmic Warfare: The New Battlefield share.gemini.google/Uvhj9dEL…
The war of smart drones becomes the war of competing, more efficient algorithms used to manage and operate them
share.google/aimode/4Jr57PUC…
Gemini:
You are entirely correct. We have crossed a threshold where the hardware—the airframe, the rotors, the battery—is merely the delivery mechanism. The actual weapon is the algorithm.Through 2024, drone warfare was defined by mass and scale: churning out millions of cheap First-Person View (FPV) drones and training enough human operators to fly them. But by 2025 and into 2026, the sheer volume of drones on the battlefield exposed the hard limits of human cognition and the vulnerabilities of remote piloting.
The conflict has definitively shifted from a war of manufacturing capacity to what military strategists now call algorithmic warfare or machine-speed adaptive hyperwar.
The Death of the Joystick
The transition to algorithmic control wasn’t born out of a desire for sophisticated tech; it was forced by battlefield friction. Two absolute bottlenecks made human-piloted drones unsustainable at the scale modern war demands:
The Electronic Warfare (EW) Wall: In 2025, EW became an omnipresent shield rather than a situational tactic. Human-operated drones require a continuous radio frequency (RF) link. When jamming severs that link, a dumb drone falls out of the sky. An algorithmically driven drone, however, relies on onboard machine vision. Once a target is locked, it doesn’t matter if the RF link is jammed or GPS is spoofed; the onboard AI guides the drone through the final terminal phase autonomously.
Operator Burnout and Scaling Limits: You cannot indefinitely scale human drone teams. Operating an FPV drone in combat is highly cognitive, stressful work. Algorithms solve the human bottleneck. The role of the human is shifting from pilot to tactical manager. A single operator now selects targets and defines deployment parameters, while the algorithm handles the flight path, evasion, and terminal attack of an entire swarm.
Machine-Speed HyperwarWhen algorithms take over, the Observe-Orient-Decide-Act (OODA) loop compresses from minutes to milliseconds. We are already seeing the early stages of this deployment:
Ukraine’s Saker Scout: This system uses machine vision and onboard AI in the final phase of a strike, capable of visually identifying over 60 categories of Russian military equipment and striking without an operator link.
Russian V2U Loitering Munitions: Recent deployments have shown units equipped with advanced processing chips that can autonomously form holding patterns and coordinate attacks on vehicles if they lose their human connection.
The “Autonomy Trap”: The profound risk now is algorithmic escalation. When two competing autonomous systems encounter each other, they react at machine speed. One system detects a threat and initiates a strike before a human commander is even briefed, forcing the adversary’s AI to instantly counter-strike.
To see why militaries are so eager to hand control over to the algorithm, we have to look at how these systems behave under stress compared to a human operator:The Strategic Restructuring
This reality is forcing a massive systemic restructuring of how global militaries fund and organize themselves. The era of treating AI as a quirky tech-startup experiment is over.
Look at the Pentagon. In late 2025, they quietly dissolved the “Replicator Initiative” (which aimed to quickly field thousands of cheap drones) and absorbed it into the Defense Autonomous Warfare Group (DAWG). DAWG isn’t just a working group; the White House requested a staggering $54.6 billion for it in the FY27 budget—a 24,000% increase.
The core philosophy of DAWG represents the exact shift you noted: the hardware doesn’t matter as much as the software. They are focusing on developing sophisticated, adaptable algorithms that can be flashed onto any cheap drone frame to instantly turn it into an autonomous swarm asset.
Warfare has ceased to be a contest of platforms. It is now a battle of sovereign data sets, where the victor is the one who can best train their algorithms to recognize, maneuver, and kill faster than the opposing code.
–
The war of smart drones becomes the war of competing, more efficient algorithms used to manage and operate them
share.google/aimode/4Jr57PUC…— Michael Novakhov (@mikenov) Jul 7, 2026
SPIES BUSTED: Two retired Italian intel officers were arrested in Rome for passing classified intel to Moscow. 5 other potential sources, including active Ministry of Defense personnel, now under investigation. Is Western counterintelligence waking up?
ansa.it/english/news/general…— @ChuckPfarrer Jul 7, 2026
#Drones and #Satellites – #AI Review
Autonomous Drones In GPS-Denied Environments – Google Gemini gemini.google.com/app/767626…
The intelligence needed to operate long range drones is based on satellites – AI Mode
share.google/aimode/HxI8rwpj…
Pic.:
Modern long-range strike drones are increasingly designed for GPS-denied environments.. Source: MikeMareen / Getty Images
–
Gemini:
Break down the strategic intelligence operations and OSINT methodologies used to coordinate these deep-strike drone campaigns.The coordination of these deep-strike campaigns represents a fundamental shift in how intelligence is gathered, processed, and operationalized. It is no longer a linear process of satellite reconnaissance leading to a strike weeks later; it is a rapid, decentralized loop designed to bridge the epistemological gap between gathering massive amounts of data and executing a precision strike before the target moves.
Here is how the intelligence and OSINT architecture functions in 2026.
The Operational Architecture: Segmented Control
The physical execution of these strikes relies on a highly decentralized, multi-tiered command structure that masks the origin and intent of the drone until the last possible moment.Geographic Handoffs: A long-range drone is rarely controlled by a single operator for its entire flight. Drones are often launched from secure, heavily camouflaged rear areas (sometimes over 200 kilometers away from the operators). As the drone nears the target zone, control is seamlessly handed off to forward-deployed units—such as the elite K-2 brigade operating out of basements in Kharkiv—who manage the terminal, thermal-imaging-guided strike phase.The Washington Post
The Communications Pivot: A critical enabler of this architecture occurred in early 2026 when unauthorized Russian access to Starlink was systematically disrupted. This cleared the electromagnetic spectrum for Ukrainian forces, allowing upgraded drones to maintain high-bandwidth connections, resist electronic warfare (EW) jamming, and boost strike success rates for some units to nearly 80%.WKYCOSINT Methodologies and AI Integration
The primary challenge in modern targeting is not a lack of information, but a severe bottleneck in human cognition. The sheer volume of open-source and signals data creates an epistemological gap—collecting the data is entirely different from understanding it fast enough to act.Algorithmic Triage: To bypass traditional intelligence bottlenecks, AI systems are increasingly used to scrape and synthesize massive civilian datasets. This includes cross-referencing commercial Synthetic Aperture Radar (SAR) imagery with localized social media chatter (like Telegram or VKontakte posts from Russian civilians complaining about troop movements or fuel shortages).Medium
Micro-Targeting Infrastructure: For strikes deep inside Russia, OSINT isn’t just used to find a facility; it is used to find its most critical vulnerability. Analysts map the exact blueprints of facilities like the Omsk refinery to target the specific distillation columns or cracking towers that are the hardest for Russia to replace with domestic components, maximizing the economic and logistical pain of a single payload.Mapping the “Dead Zones”: Flight paths for 3,000-kilometer strikes are plotted by crowdsourcing and analyzing the deployment of Russian air defense systems. By continuously monitoring where Russian radars are active, intelligence units map out the “dead zones”—the vast, uncovered corridors in Russia’s interior—and program autonomous drones to navigate these specific seams.Euromaidan Press
The Targeting Philosophy: “Logistics Lockdown”While the extreme-range strikes grab headlines, the mid-range campaign (striking 60 to 150 kilometers behind the front lines) is governed by a strict intelligence philosophy aimed at systemic degradation.
Hunting the Arteries: Intelligence operations prioritize the dynamic supply chains over static bases. Operators use thermal imaging and pattern-of-life analysis to hunt fuel trucks, ammunition transports, and the mobile fire teams protecting them.The Washington Post
Induced Starvation: The strategic goal is isolation. By systematically cutting off the logistics routes, frontline Russian infantry are left without food, ammunition, and night-vision capabilities, forcing them to culminate their offensives or abandon fortified positions.The Washington PostWant to look at the psychological profiles of the commanders directing this?
— Michael Novakhov (@mikenov) Jul 7, 2026
Zelensky has warned Putin that the mass drone strikes targeting Russia are only going to get worse.
thedailybeast.com/putin-give…— @thedailybeast Jul 7, 2026
#Drones and #Satellites – #AI Review
Autonomous Drones In GPS-Denied Environments – Google Gemini gemini.google.com/app/767626…
The intelligence needed to operate long range drones is based on satellites – AI Mode
share.google/aimode/HxI8rwpj…
Pic.:
Modern long-range strike drones are increasingly designed for GPS-denied environments.. Source: MikeMareen / Getty Images— Michael Novakhov (@mikenov) Jul 7, 2026
NEW: President Trump says he wants to end the war between Russia and Ukraine in order to bring an end to the bloodshed in Europe.
“I just don’t want to kill people.”
“I sell [equipment] to the European Union. They pay us, but with me it’s not anything to do other than I’d like to save lives… You have… one time, 41,000 a month souls. They’re dead.”
“It doesn’t affect the United States… It affects Europe much more. We’re there to help Europe, but it doesn’t affect the United States. We have an ocean in between.”
Video
— @FoxNews Jul 7, 2026
