Showing posts with label DIY. Show all posts
Showing posts with label DIY. Show all posts

Sunday, September 07, 2014

Top 5 Killer Apps: QS-Automotive Sensors

The Internet of Things means not just that computing devices have connectivity to the cloud but that they are connected to each other, and therefore that novel applications can be developed in this rich ecosystem. One area for development is linking quantified self wearable sensors with automotive sensors for applications including Fatigue Detection, Real-time Parking and Assistance, Anger/Stress Reduction, Keyless Authentication, and DIY Diagnostics.

The auto industry may be poised for tremendous change in the next two decades with self-driving cars, denser cities, more cars on the road, and alternative fuel sources expected. This suggests new concepts in personal transportation, including redefining 'what a car is' to shift from a 'dumb conveyance' to an interactive platform communicating in real-time with other drivers, smartcity infrastructure, driver and passenger biometric data, and other sensor/internet of things information streams.

 Smart Pod Conveyance of the Future?

 (Image: M. Ghezel)

Top 5 Killer Apps 

1. Fatigue Detection
  • Fatigue is implicated in 20% of accidents. Early warning signs are a slower driver heart rate and breathing rate, and posture slump. These could be detected through wearable sensors or auto-based sensors, and an intervention provided (verbal alert, seat vibration, music, or puff of air). 
2. Real-time Parking and Assistance
  • Up to 75% of city center congestion may be caused by drivers looking for parking. Parking garage data could be connected to on-board navigation systems to show and guide drivers to available spots, and further reserve and pre-pay for spots where a user presents a QR code on a smartwatch or smartphone to a smart parking gate like from SureSpot to obtain the parking ticket [and directions to the spot]. 
  • A related idea is real-time automatic road-side assistance, where automotive sensors would assess crash impact and predict damage. Then if appropriate the vehicle could alert local trauma centers (tier 1-5) and first responders. If the accident is less serious, if the driver has permissioned such a service, an app could automatically request local vendor service quotes.

3. Anger/Stress Reduction
  • Anger reduction is the most obvious area for improvement where most simply the driver’s mental state could be read from sensors and interventions provided such as breathing exercises, music, and question-based (re-focusing) intervention. 
  • Smart steering wheels with heart sensors could be used to detect heart attacks. Medical emergencies are implicated in 1% of accidents, and this number is growing with active adults driving longer, and commute distances lengthening. 
  • Wearable or auto-based sensors could provide a daily health check that is completely transparent to the driver measuring heart rate, respiration, blood pressure, skin conductance, and glucose levels, and sent through the cloud to the driver’s personal EMR or QS data portal. 
  • Addressing stress as a complex adaptive system, multiple data streams could be integrated into a ‘leave on time’ app. A key stressor in distracted driving is being late. An individual’s online calendar could be connected with real-time traffic data so smarthome or smartwatch alerts communicate to leave earlier for an appointment and confirm if this happens, and measure drive-time stress. Financial incentives could be offered for both health and auto insurance discounts for reduced stress and smart driving.
4. Keyless Authentication
  • Keyless authentication, could facilitate one-time or short-term access, for example for automated car rental, assuming anti-theft concerns are allayed. Vehicle authentication and access could be via Bluetooth, QR code, blockchain technologies, and/or smartwatch fingerprint readers for an added layer of validation.
5. DIY Diagnostics
  • DIY diagnostics accessed with tools like the CarChip could be an important app. Just like DIYscience and DIY health, on-board diagnostic data could be collected and linked to user-friendly consumer apps for pro-active notification and preventive maintenance. Asynchronous reminders (later while the driver is relaxing at home) could consist of the vehicle tweeting the driver more granular detail about its condition and potential maintenance, including the projected cost per different future time points if the maintenance is delayed.

More Details and References to Statistical Citations: Sensor Ubiquity: Blockchain Tech and Automotive-Quantified Self Integrated Sensor Applications developed for Toyota's Collaborative Safety Research Center.

Sunday, April 06, 2014

New Fields of Research Defined by Open Science Visionaries

The purpose of an open-science non-profit research startup like DIYgenomics is research innovation.

The value is in being able to propose a unique and visionary research agenda of questions that are forward-looking and not the focus or interest of the institutional research industry.

Research innovation falls into two tiers:

First is preventive medicine questions, ‘medicine that matters to me’ (e.g.; small groups or individuals), and non-pathologies.

More importantly, the second tier is defining completely new fields of research such as athletic performance genomics, social intelligence genomics, cognitive performance genomics, and DIYneuroscience, and making progress on widespread philosophical and societal problems such as the destigmatization of physical and mental health issues, and the reduction of discrimination as a broad social problem.

DIY open-science, crowdsourced health social networks, and community biohacking labs are the early-stage startup/venture capital arm of the expanding preventive medicine ecosystem of health services, and are able to surface projects of interest that can then be pursued at the institutional level as relevant.

Sunday, December 22, 2013

Biodesign: a Prevalent Cultural Trope

A new science or technology field really starts to capture the imagination and become mainstream when it seeps into art and culture. This is increasingly evident with bioart, bioprinting, and synthetic biology.

In bioart (using biological materials to make art), there have already been several phases starting with bacteria drawings in petri dishes and more recently culminating in DNA manipulation, live cells growing into cultured shapes in galleries, and the Algae Opera (an opera singer’s CO2 producing algae in real-time for audience consumption).

Bioprinting is an emerging field which marries the 3D printing revolution with biohacking and DIYlabs in the 3D printing of designed human materials for aesthetic and functional purposes.  

Synthetic biology (the design and construction of biological devices and systems) is being featured in art shows alongside industry conferences and in film festivals, including in its own Bio-Fiction, an international synthetic biology science, art, and film festival series.

Not only are we making art with biology as an artistic material, culture is being made in new ways through biology. 
The theme of biodesign is becoming prevalent as a cultural trope through the rapid expansion of designed biology into the arts, culture, collective human consciousness, and science and technology. These ideas are becoming quite normal, which can only mean that their demise through kitschification and cliché could be coming soon in a subsequent era of anti-bioart, post-bioprinting, post-synbio!

Sunday, January 17, 2010

How Daemon/Freedom is starting to happen

The books by Daniel Suarez, Daemon and Freedom, portray a possible extension of the world of today. Some elements contemplated in the books are obviously already in place such as worldwide gaming communities like World of Warcraft (11 million subscribers as of December 2008) and other MMORPGs. Botnetting of government and corporate computers is another existing feature of the contemporary world. High-magnitude financial crises (e.g., 2008) and dissatisfaction with the way they are handled is another obvious parallel, with grassroots responses such as the Move your Money movement to use local banks that did not receive bailout funds.

At a broader level, one of the most interesting ways that fundamental economic transformation could happen is the way that humans worldwide are starting to behave like a vast complex adaptive system (CAS).

1) Location-based services check-ins
Mobile-device users are checking in at the different physical locations they visit using FourSquare, Loopt, and other location-based services (LBS). People are shifting their physical-world behavior to unlock certain badges and points. In addition to earning badges and mayorships for the number of check-ins to a particular location, opt-in communities could develop using LBS platforms to award the type of check-ins, giving points and badges for behavior valued by the community. FourSquare's API is available and new applications are already being created. A simple example of rewarded behavior would be receiving double points for gym visits, escalating levels over time as visits accumulate. Another example for certain user communities might be earning double points for check-ins at local coffee shops vs. Starbucks. Starbucks actually comprises over 30% of all check-ins for LBS service Loopt.

Not just the geographical location, but also the type of activities could be rewarded. For example, there could be creativity, collaboration, learning, and teaching badges from check-ins at places like the TechShop, BioCurious, Hacker Dojo, or the Hub (social venturing collaboration). There could be time and location tagging for event attendance interpolation. Not every user would want this detail or would make their activity public, but this functionality could be useful for life-logging too. There could be sensors on public transit registering user behavior or some other way to ‘check in’ to transportation-based behavior.

There could be both incentives for positive behavior and disincentives for negative behavior. For example, users could receive points for not doing behaviors like checking in at fast-food restaurants, not going to gas stations (congratulations, you only went to a gas-station once this month!). A trustable automated check-in system could provide behavior validation, although there are obvious hacks such as not bringing the mobile device when going to fast-food locations. Finally, the spirit of incentivized check-ins should be opt-in, fun, and empowering, not didactic.

2) Real-time economy feeds
A second interesting complex adaptive system element that is arising is a real-time economy feed in the form of Blippy. Parts of the feed are publicly open and other parts just to the user community. The feed provides immediacy, transparency, and detail regarding economic activity, like real-time game-like granularity. Features could be added for zooming into views of more or less detail (e.g., real-time to-date, Amazon’s sales are down this month vs. last month). The user community can comment and interact around specific purchases.

In addition to the democratic openness of a real-time economy feed, this platform could be used the same was as LBS check-ins to reward certain behaviors. Blippy users could earn points for certain types of purchases, like carbon-neutral products certified by GoodGuide, Green Home, or ClimateCooler. Lower energy usage could be rewarded. With detailed purchase granularity, behavioral goals could be facilitated (e.g., Congratulations, you did not buy cigarettes this month! Congratulations, you bought less ice cream this month!)

3) DIYBio email list
A third fascinating development of humans as a complex adaptive system for change is the DIYbio movement. DIYbio is a worldwide self-sustaining collaborative community arising to build a new or complementary scientific order in biology. The story is told through these snippets of recent postings…
  • DIYbio meeting Wednesday Jan 13th at 7PM: So all the DIYbio groups have hacked 300X microscopes out of $7 webcams.
  • Plant stilbenes, SIRT1 activators; request for assistance: Hi, I am looking for tropical crop plants that produce phytoalexins called stilbenes; phenolic chemicals, that among other things, include molecules that activate the SIRT1 deacetylase. For the moment I am restricting my search to plants of the Fabaceae subfam. Faboideae (pea group). Currently, I am looking at the literature on Cajanus cajan (pigeonpea) & Arachis hypogaea (peanut, groundnut). I am also looking at literature on non-resveratrol stilbene activators of SIRT 1. I have linked two relevant papers for context.
  • DIY movement in Shenzhen, China: I'm looking for a previous post about a DIY movement in Shenzhen, China, somebody posted it before but I can't find it now? It wasn't bio focused, more about electronics.