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THE BEADY EYE ASK’S : ARE OUR LIVES GOING TO BE RULED BY ALGORITHMS.

20 Saturday May 2023

Posted by bobdillon33@gmail.com in 2023 the year of disconnection., Algorithms., Artificial Intelligence., Big Data., Communication., Dehumanization., Democracy, Digital age., DIGITAL DICTATORSHIP., Digital Friendship., Disconnection., Fourth Industrial Revolution., Human Collective Stupidity., Human values., Humanity., Imagination., IS DATA DESTORYING THE WORLD?, Modern Day Democracy., Our Common Values., Purpose of life., Reality., Social Media Regulation., State of the world, Technology, Technology v Humanity, The Obvious., The state of the World., The world to day., THE WORLD YOU LIVE IN., THIS IS THE STATE OF THE WORLD.  , Tracking apps., Unanswered Questions., Universal values., We can leave a legacy worthwhile., What is shaping our world., What Needs to change in the World

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Algorithms., Artificial Intelligence., The Future of Mankind, Visions of the future.

( Ten minute read) 

I am sure that unless you have being living on another planet it is becoming more and more obvious that the manner you live your life is being manipulate and influence by technologies.

So its worth pausing to ask why the use of AI for algorithm-informed decision is desirable, and hence worth our collective effort to think through and get right.

A huge amount of our lives – from what appears in our social media feeds to what route our sat-nav tells us to take – is influenced by algorithms. Email knows where to go thanks to algorithms. Smartphone apps are nothing but algorithms. Computer and video games are algorithmic storytelling.  Online dating and book-recommendation and travel websites would not function without algorithms.

Artificial intelligence (AI) is naught but algorithms.

The material people see on social media is brought to them by algorithms. In fact, everything people see and do on the web is a product of algorithms. Algorithms are also at play, with most financial transactions today accomplished by algorithms. Algorithms help gadgets respond to voice commands, recognize faces, sort photos and build and drive cars. Hacking, cyberattacks and cryptographic code-breaking exploit algorithms.

Algorithms are aimed at optimizing everything.

Self-learning and self-programming algorithms are now emerging, so it is possible that in the future algorithms will write many if not most algorithms.

Yes they can save lives, make things easier and conquer chaos, but when it comes both the commercial/ social world, there are many good reasons to question the use of Algorithms.

Why? 

They can put too much control in the hands of corporations and governments, perpetuate bias, create filter bubbles, cut choices, creativity and serendipity, while exploiting not just of you, but the very resources of our planet for short-term profits, destroying what left of democracy societies, turning warfare into face recognition, stimulating inequality, invading our private lives, determining our futures without any legal restrictions or transparency, or recourse.

The rapid evolution of AI and AI agents embedded in systems and devices in the Internet of Things will lead to hyper-stalking, influencing and shaping of voters, and hyper-personalized ads, and will create new ways to misrepresent reality and perpetuate falsehoods.

———

As they are self learning, the problem is who or what is creating them, who owns these algorithms and what if there should be any controls in their usage.

Lets ask some questions that need to be ask now not later concerning them. 

1) The outcomes the algorithm intended to make possible (and whether they are ethical)

2) The algorithm’s function.

3) The algorithm’s limitations and biases.

4) The actions that will be taken to mitigate the algorithm’s limitations and biases.

5) The layer of accountability and transparency that will be put in place around it.

There is no debate about the need for algorithms in scientific research – such as discovering new drugs to tackle new or old diseases/ pandemics, space travel, etc. 

Out side of these needs the promise of AI is that we could have evidence-based decision making in the field:

Helping frontline workers make more informed decisions in the moments when it matters most, based on an intelligent analysis of what is known to work. If used thoughtfully and with care, algorithms could provide evidence-based policymaking, but they will fail to achieve much if poor decisions are taken at the front.

However, it’s all well and good for politicians and policymakers to use evidence at a macro level when designing a policy but the real effectiveness of each public sector organisation is now the sum total of thousands of little decisions made by algorithms each and every day.

First (to repeat a point made above), with new technologies we may need to set a higher bar initially in order to build confidence and test the real risks and benefits before we adopt a more relaxed approach. Put simply, we need time to see in what ways using AI is, in fact, the same or different to traditional decision making processes.

The second concerns accountability. For reasons that may not be entirely rational, we tend to prefer a human-made decision. The process that a person follows in their head may be flawed and biased, but we feel we have a point of accountability and recourse which does not exist (at least not automatically) with a machine.

The third is that some forms of algorithmic decision making could end up being truly game-changing in terms of the complexity of the decision making process. Just as some financial analysts eventually failed to understand the CDOs they had collectively created before 2008, it might be too hard to trace back how a given decision was reached when unlimited amounts of data contribute to its output.

The fourth is the potential scale at which decisions could be deployed. One of the chief benefits of technology is its ability to roll out solutions at massive scale. By the same trait it can also cause damage at scale.

 In all of this it’s important to remember that while progress isn’t guaranteed transformational progress on a global scale normally takes time, generations even, to achieve but we pulled it off in less than a decade and spent another decade pushing the limits of what was possible with a computer and an Internet connection and, unfortunately, we are beginning running into limits pretty quickly such as.

No one wants to accept that the incredible technological ride we’ve enjoyed for the past half-century is coming to an end, but unless algorithms are found that can provide a shortcut around this rate of growth, we have to look beyond the classical computer if we are to maintain our current pace of technological progress.

A silicon computer chip is a physical material, so it is governed by the laws of physics, chemistry, and engineering.

After miniaturizing the transistor on an integrated circuit to a nanoscopic scale, transistors just can’t keep getting smaller every two years. With billions of electronic components etched into a solid, square wafer of silicon no more than 2 inches wide, you could count the number of atoms that make up the individual transistors.

So the era of classical computing is coming to an end, with scientists anticipating the arrival of quantum computing designing ambitious quantum algorithms that tackle maths greatest challenges an Algorithm for everything.

———–

Algorithms may be deployed without any human oversight leading to actions that could cause harm and which lack any accountability.

The issues the public sector deals with tend to be messy and complicated, requiring ethical judgements as well as quantitative assessments. Those decisions in turn can have significant impacts on individuals’ lives. We should therefore primarily be aiming for intelligent use of algorithm-informed decision making by humans.

If we are to have a ‘human in the loop’, it’s not ok for the public sector to become littered with algorithmic black boxes whose operations are essentially unknowable to those expected to use them.

As with all ‘smart’ new technologies, we need to ensure algorithmic decision making tools are not deployed in dumb processes, or create any expectation that we diminish the professionalism with which they are used.

Algorithms could help remove or reduce the impact of these flaws.


So where are we.

At the moment modern algorithms are some of the most important solutions to problems currently powering the world’s most widely used systems.

Here are a few. They form the foundation on which data structures and more advanced algorithms are built.

Google’s PageRank algorithm is a great place to start, since it helped turn Google into the internet giant it is today.

The PageRank algorithm so thoroughly established Google’s dominance as the only search engine that mattered that the word Google officially became a verb less than eight years after the company was founded. Even though PageRank is now only one of about 200 measures Google uses to rank a web page for a given query, this algorithm is still an essential driving force behind its search engine.

The Key Exchange Encryption algorithm does the seemingly impo

Backpropagation through a neural network is one of the most important algorithms invented in the last 50 years.

Neural networks operate by feeding input data into a network of nodes which have connections to the next layer of nodes, and different weights associated with these connections which determines whether to pass the information it receives through that connection to the next layer of nodes. When the information passed through the various so-called “hidden” layers of the network and comes to the output layer, these are usually different choices about what the neural network believes the input was. If it was fed an image of a dog, it might have the options dog, cat, mouse, and human infant. It will have a probability for each of these and the highest probability is chosen as the answer.

Without backpropagation, deep-learning neural networks wouldn’t work, and without these neural networks, we wouldn’t have the rapid advances in artificial intelligence that we’ve seen in the last decade.

Routing Protocol Algorithm (LSRPA) are the two most essential algorithms we use every day as they efficiently route data.

The two most widely used by the Internet, the Distance-Vector Routing Protocol Algorithm (DVRPA) and the Link-State traffic between the billions of connected networks that make up the Internet.

Compression is everywhere, and it is essential to the efficient transmission and storage of information.

Its made possible by establishing a single, shared mathematical secret between two parties, who don’t even know each other, and is used to encrypt the data as well as decrypt it, all over a public network and without anyone else being able to figure out the secret.

Searches and Sorts are a special form of algorithm in that there are many very different techniques used to sort a data set or to search for a specific value within one, and no single one is better than another all of the time. The quicksort algorithm might be better than the merge sort algorithm if memory is a factor, but if memory is not an issue, merge sort can sometimes be faster;

One of the most widely used algorithms in the world, but in that 20 minutes in 1959, Dijkstra enabled everything from GPS routing on our phones, to signal routing through telecommunication networks, and any number of time-sensitive logistics challenges like shipping a package across country. As a search algorithm, Dijkstra’s Shortest Path stands out more than the others just for the enormity of the technology that relies on it.

——–

At the moment there are relatively few instances where algorithms should be deployed without any human oversight or ability to intervene before the action resulting from the algorithm is initiated.

The assumptions on which an algorithm is based may be broadly correct, but in areas of any complexity (and which public sector contexts aren’t complex?) they will at best be incomplete.

Why?

Because the code of algorithms may be unviewable in systems that are proprietary or outsourced.

Even if viewable, the code may be essentially uncheckable if it’s highly complex; where the code continuously changes based on live data; or where the use of neural networks means that there is no single ‘point of decision making’ to view.

Virtually all algorithms contain some limitations and biases, based on the limitations and biases of the data on which they are trained.

 Though there is currently much debate about the biases and limitations of artificial intelligence, there are well known biases and limitations in human reasoning, too. The entire field of behavioural science exists precisely because humans are not perfectly rational creatures but have predictable biases in their thinking.

Some are calling this the Age of Algorithms and predicting that the future of algorithms is tied to machine learning and deep learning that will get better and better at an ever-faster pace. There is something on the other side of the classical-post-classical divide, it’s likely to be far more massive than it looks from over here, and any prediction about what we’ll find once we pass through it is as good as anyone else’s.

It is entirely possible that before we see any of this, humanity will end up bombing itself into a new dark age that takes thousands of years to recover from.

The entire field of theoretical computer science is all about trying to find the most efficient algorithm for a given problem. The essential job of a theoretical computer scientist is to find efficient algorithms for problems and the most difficult of these problems aren’t just academic; they are at the very core of some of the most challenging real world scenarios that play out every day.

Quantum computing is a subject that a lot of people, myself included, have gotten wrong in the past and there are those who caution against putting too much faith in a quantum computer’s ability to free us from the computational dead end we’re stuck in.

The most critical of these is the problem of optimization:

How do we find the best solution to a problem when we have a seemingly infinite number of possible solutions?

While it can be fun to speculate about specific advances, what will ultimately matter much more than any one advance will be the synergies produced by these different advances working together.

Synergies are famously greater than the sum of their parts, but what does that mean when your parts are blockchain, 5G networks, quantum computers, and advanced artificial intelligence?

DNA computing, however, harnesses these amino acids’ ability to build and assemble itself into long strands of DNA.

It’s why we can say that quantum computing won’t just be transformative, humanity is genuinely approaching nothing short of a technological event horizon.

Quantum computers will only give you a single output, either a value or a resulting quantum state, so their utility solving problems with exponential or factorial time complexity will depend entirely on the algorithm used.

One inefficient algorithm could have kneecapped the Internet before it really got going.

It is now oblivious that there is no going back.

The question now is there anyway of curtailing their power.

This can now only be achieved with the creation of an open source platform where the users control their data rather than it being used and mined.  (The uses can sell their data if the want.)

This platform must be owned by the public, and compete against the existing platforms like face book, twitter, what’s App, etc,   protected by an algorithm that protects the common values of all our lives – the truth. 

Of course it could be designed by using existing algorithms which would defeat its purpose. 

It would be an open net-work of people a kind of planetary mind that has to always be funding biosphere-friendly activities.

A safe harbour perhaps called the New horizon.   A digital United nations where the voices of cooperation could be heard.   

So if by any chance there is a human genius designer out there that could make such a platform he might change the future of all our digitalized lives for the better.   

All human comments appreciated. All like clicks and abuse chucked in the bin.

Contact: bobdillon33@gmail.com  

 

 

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THE BEADY EYE ASK’S: IS DATA DESTORYING THE WORLD?

29 Thursday Dec 2022

Posted by bobdillon33@gmail.com in IS DATA DESTORYING THE WORLD?, Uncategorized

≈ Comments Off on THE BEADY EYE ASK’S: IS DATA DESTORYING THE WORLD?

Tags

Algorithms., Artificial Intelligence., Capitalism and Greed, Capitalism vs. the Climate., IS DATA DESTORYING THE WORLD?, The Future of Mankind, Visions of the future.

(Fifteen minute read)

The short answer: Yes, and it comes with a cost, we now have Apps you pay for to stop data collection

Technological advancements are difficult to forecast, but several models predict that data centre’s energy usage could engulf over 10% of the global electricity supply by 2030 if left unchecked.

There is no denying that the future of technology will continue to revolutionize our lives, but you’d be hard-pressed to find anyone who doesn’t care about their privacy. It’s human nature. You want control over what private information you share and who you share it with. Unfortunately, you can lose this control with a careless click.

Various entities handle your private data. The first among them is the government and its institutions. You can’t get public services (for example, electricity, a high school education, healthcare) without identifying yourself.

You can buy apples at a stand and remain a stranger to the fruit seller. But buy apples online, and you’ll give away private information about yourself. It may be a fact as simple as that you like apples. This information will be sold to an advertiser, and the next time you go online, an ad for apples will pop up on your screen.

Almost everything you do online leaves a data breadcrumb. You have little control over how these breadcrumbs are collected.

Usually, it works like this. Before you start using a new online service, you have to read a wall of fine print. You do not do so, because you don’t want to wade through paragraphs of jargon. You click that you agree, and that’s how you begin to give away your private data. You cannot change the agreement, and you cannot bargain — it’s take it or leave it and if you reject all, rest assured it is logged as data. 

There are countless technology advances in hospitals and medicine but as data penetrates deeper into biologically and culturally diverse corners of the world is technology a sustainability hero or villain?

Information privacy will become an even hotter topic once technologies create more invasive tools. You’ll be surrounded by facial-recognition cameras, smart speakers that listen to your conversations, e-textiles, wearable health monitors, and other data-gathering gadgets.

                                                                          ——————————–

All-together, this paints a challenging picture for the future of our environment. Many technology companies have yet come to grips with the environmental impact associated with their products and services.

Analysis by Veritas estimates that 5.8 million tonnes of CO2 will be pumped into the atmosphere this year as a result of storing unnecessary ‘dark data’ – this translates to more emissions than 80 individual countries.

Destroying our planet is no easy task. Sure, you could bomb us back to the stone age, introduce a plague to wipe out all complex life or whip up some sort of nanomachine to completely eliminate the entire biosphere. But in all those cases, the rock we stand on would still remain, lifelessly circling the sun for billions of years to come.

Getting a handle on wayward data is becoming as big a problem as Climate Change.

The list of significance of data analytics just goes on and on – you need data to pitch stocks, file financial reports and provide better service to your clients, arrive at projections, assess performance. Objects that use IoT today include driverless cars, fitness trackers like Fitbit, thermostats, and doorbells. Objects that use IoT are also commonly referred to as smart objects. smart thermostat online shopping.  voice assistants. integrate your voice assistant with any smart device. food delivery.

Who hasn’t heard of Facebook, Twitter, or Skype? They’ve become household names. Even if you don’t use these platforms, they’re a part of everyday life and not going away anytime soon.top reads of 2022

Communication tools offer one of the most significant examples of how quickly technology has evolved.

Technology has changed money

No more do you have to enter a bank to withdraw money or transfer it to someone. With your cell phone and a banking app, you can manage all of your necessary bill payments online.

The smartwatch is a relatively new technology that captures almost all the capabilities of smartphones in a convenient touch-screen watch. You can receive notifications, track your activity, set alarms, and even call and text directly through these wearable devices. Technology has changed how we watch television, what news we get.  More and more TVs these days are even designed for streaming. “Smart TVs” have Wi-Fi capability. Paper books aren’t going anywhere. We can access our music no matter where we are. For better or worse, technology has also made it possible for you to find other people’s personal information on the Internet through social media. You can gain access to the information you want to know about a particular person.

Medical Guardian Medical Alert System

So is Data screwing up the world?

Well, neither really but should we be steering technological innovation and deployment to drive social progress.

Technology encompasses a broad range of products and systems, some of which will help us live more sustainably and others that won’t.  The production and use of technology will always involve the consumption of energy and materials, but if that same technology helps us minimise our consumption in other ways or allows us to use more sustainable methods of production, then the net effect will be positive.

Over the years, technology has revolutionized our world and daily lives. The amount of active web users globally is now near 3.2 billion people. That is almost half of the world’s population adoption of new technologies, like smartphones and wearables, may have slowed down significantly in the last few years, but data usage is only continuing to grow—massively.

In 2012, there were only 500,000 data centres worldwide to handle global traffic, but today there are more than 8 million according to IDC.

As data becomes more siloed and fragmented, it gets increasingly harder to find and manage.

Take Bitcoin mining network which are now consumes more energy than the whole of Ireland. And it’s growing at about 30% a month.

Take Netflix binging. Storing and streaming all that digital content requires a lot of energy, and as consumers expect regular new content and ever better video quality, the energy demands spiral upwards.

It’s not just Netflix of course. In total, data centres consume roughly 3% of the world’s energy supply, and this amount is estimated to treble in the next decade.

Take that every year, millions of data centres worldwide are purging metric tons of hardware, draining country-sized amounts of electricity, and generating carbon emissions as much as the global airline industry. Data centres energy usage could engulf over 10% of the global electricity supply by 2030 if left unchecked. It is double every four years. Analysis by Veritas estimates that 5.8 million tonnes of CO2 will be pumped into the atmosphere this year as a result of storing unnecessary ‘dark data’ – this translates to more emissions than 80 individual countries.

All-together, this paints a challenging picture for the future of our environment because  it’s one of the largest and most unappreciated blind spots in the fight against climate change.

The most important next step right now is simply education – and getting companies to realize that the importance and benefits of more eco-friendly data centres, but the impact is also determined by how we, the consumers, use that technology.

Heading into 2023 the signals are mixed turning millions of us into remote-workers.

Perhaps the most concerning way that technology impacts our environment is through the mining of vast quantities of rare metals. Metals like lithium, cobalt and nickel are used to make critical hardware components – batteries in particular – for things like computers, smartphones and electric cars. Unfortunately, mining these metals is energy intensive and comes not just at an environmental cost, but often a terrible human cost too. Moreover, these rare metals are just that: rare. Without large investment in recycling facilities, using these limited natural resources is unsustainable. The planned obsolescence of consumer gadgets only exacerbates the problem.

We will not likely get through the coming year without some sort of catastrophic attack on a very strategic and important network or service provider like Gmail, WhatsApp, or Microsoft.

The revolutions that will surface in years to come will continue to make profound changes in our everyday lives.

In the end, the environmental impact will depend not only on choices that we make as consumers, but on the social and political choices that we make collectively as citizens.

Our data centres don’t have to harm the environment, if we take the proper actions today.

Only 12% of today’s data centres that are green. According to analyst firm IDC, in 2012, there were only 500,000 data centres worldwide that were handling global traffic, but today there are more than 8 million.

“The time for pure national interests has passed, internationalism has to be our approach and in doing so bring about a greater equality between what nations take from the world and what they give back. The wealthier nations have taken a lot and the time has now come to give.”

Why destroy the planet if we don’t have to.

Whole industries (think telemarketers, corporate law, private equity) whole lines of work (middle management, brand strategists, high-level hospital or school administrators, editors of in-house corporate magazines) exist primarily to convince us there is some reason for their existence.

It’s not our pleasures that are destroying the world. It’s our puritanism, our feeling that we have to suffer in order to deserve those pleasures. If we want to save the world, we’re going to have to stop working in bullshit jobs.

It is ironic that the technologies most responsible for the mood of today’s world are also best positioned to improve it.

AI must be programmed to enhance human life as opposed to imitating it.

From social media to the climate crisis, Big Data is helping to ruin everything. The total lack of legal data rights for individuals is a violation of autonomy, privacy, and even freedom of thought and speech.

Currently we have no rights at all to own our data, and it can be sold easily to the highest bidder to do with it as they please.

Everyone has the right to freedom of opinion and expression; this right includes freedom to hold opinions without interference and to seek, receive and impart information and ideas through any media and regardless of frontiers.

There are fantastic things that can be done with data, and it is absolutely essential to so much of modern scientific and engineering feats which we hope might save the world. Without data, none of our interventions in great problems like climate change would be able to do anything at all. In fact, without adequate data collection and analysis, we might never have noticed that climate change is happening at all.

Just remember these few things:

  • Data is not your ally — especially not when you are trying to convince somebody of something. Changing a whole mindset requires more than just statistics, and raw data is so abstract and such a broad category that there can easily be conflicting data sets that lead to impasses in conversation. Data is a crucial tool, but you need to build trusting mutual relationships, too.
  • Data is not your friend — it does not care whether you think you have a right to it or not. Data will be owned by and used by those who created the platform you are using, until the law changes. And the law will not change unless you start caring.
  • Data is not “things” — objects are totally separate from the data abstracted from them in a way that is metaphysically irreconcilable. There is no way to recreate an apple from mere data about an apple, nor to exhaust the nature of an apple by reducing it to data-form. This is an important principle that should be remembered whenever we deal with data: data is no more than what it is, and potentially much less.
  • Data is now just such a frontier — you are the product.

All human comments appreciated. all like clicks and abuse chucked in the bin.

Contact: bobdillon33@gmail.com

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