Showing posts with label systems. Show all posts
Showing posts with label systems. Show all posts

Sunday, August 28, 2016

Windows 8 security focuses detecting malware early Microsoft has greatly improved the operating systems ability

Windows 8 security focuses detecting malware early Microsoft has greatly improved the operating systems ability




In Windows 8, Microsoft has greatly improved the operating systems ability to detect malware before it has a chance to run, experts say. Windows 8 should also make it more difficult for people to unknowingly install malware in the first place.

The latest version of the OS, officially launched Thursday in a splashy event in New York, includes two key features to detect malware that tries to run while Windows is booting up. Hackers typically like to get their software running before the OS is fully loaded in order to remain hidden from antivirus applications.

Rootkits are a class of stealthy malware that opens a backdoor, so cybercriminals can control a PC. To avoid detection, the malware will replace the code used to start a computer with itself and disable antivirus software.

To battle rootkits, Microsoft has required computer manufacturers to drop the use of the 30-year-old BIOS firmware and replace it with the Unified Extensible Firmware Interface (UEFI). The BIOS sets up communications between the OS and computer hardware before handing over control to the OS.

[Bill Brenner in Salted Hash: Windows 8 - Security pros and cons]

UEFI makes loading rootkits more difficult by requiring that the initial boot up code be digitally signed with a certificate derived from a key in the UEFI firmware. The feature, called Secure Boot, helps ensure that the code is from a trusted source.

"This is a big step in the right direction of ensuring that no malware can install itself," said Wolfgang Kandek, chief technology officer of Qualys.

The push against rootkits comes as more sophisticated versions of the malware are being used in targeted attacks to steal documents and intellectual property from government agencies and large corporations, such as defense contractors.

This month, a House committee recommended against using products from Chinese company Huawei, saying such malware could be used in its networking gear. Experts believe China is a hotbed of cyber-espionage activity.

"Nearly all security products lack the ability to peer below the operating system to detect malware," said Paul Henry, a computer forensics expert and vice president of VNet Security. "Perhaps these new capabilities from Microsoft in Windows 8 will bring about that needed capability."

Another early-detection feature is Early Launch Anti Malware. ELAM improves security by allowing anti-virus vendors to run software while the OS is still loading, something that only Microsoft software could do before. Early loading gives antivirus vendors a chance to get their software in place before malware is activated.

While many security experts believe Windows 8 is the most secure version of the OS to date, it doesnt mean malware wont evolve to focus on other weaknesses. Security areas not addressed in Windows 8 include a better system for detecting malware before the user installs it. Such a scenario would happen if a person were tricked into opening an email attachment.

With the latest version of Mac OS X, Mountain Lion, Apple introduced a feature called Gatekeeper. The feature gives the user several options in downloading software from the web, including limiting all installations to apps downloaded from the Mac App Store.

Kandek believes Microsoft may eventually head in the same direction. "With the introduction of the Windows 8 app store, theyre trying to steer people more toward approved applications," Kandek said. "But its not as strong as it is on the [Apple] iPhone platform where you get everything from the App Store."

Besides having trusted consumer app stores available, Kandek said he believes Microsoft should make it possible for companies to manage employee-only stores.

While blocking software from an unknown source would be good from a security standpoint, such a feature may be difficult on Windows because of the huge amount of software built for the OS, said Aryeh Goretsky, a security researcher at ESET.

"The Windows Store is going to allow them to create a very large ecosystem," Goretsky said. "But I dont know if its ever going to be on the desktop Windows side at the point where you can only go through the Windows Store."

Antivirus vendors are particularly interested in the impact the new version of Windows Defender in Windows 8 will have on their business. Windows Defender includes antivirus protection.

In a recent white paper, ESET said Defender was better than free versions of antivirus products, but lacked advanced features found in paid software, such as task scheduling, centralized management and reporting.

However, a big change in Windows 8 when it comes to antivirus software is Microsofts requirement that vendors provide a clean uninstall, which means no more leaving files, drivers, registry entries and other remnants that use to cause conflicts with other software and headaches for users. Microsofts edict should also make installing and uninstalling antivirus software much easier.

Windows 8 also includes a new version of Internet Explorer. Version 10 of the browser includes running Adobe Flash in a sandbox, which is the architecture used in Google Chrome. In addition, Microsoft will push updates to Flash automatically, so people will no longer have to deal with a second vendor for updates.

By Antone Gonsalves

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Wednesday, August 24, 2016

Precision Water Management in Irrigation Systems Circuit Design

Precision Water Management in Irrigation Systems Circuit Design


The article presents a simple circuit idea which can be used for implementing an efficient water management and control in farms and irrigation systems.


The idea was requested by Mr. Ajinkya Sonwane, Mr. Akshay Kokane and Mr. Kunal Raut, studying in AISSMS IOIT College of Engineering.


As per the request, water needs to be controlled and managed at a given predetermined rate depending on the type of crop and its necessity.

The easiest possible solution to this could be in the form of solenoid timers which could be programmed once by the farmers for enabling an automatic water management, everyday, without any further intervention, until the crop or season changes. The timer is supposed to be extremely flexible, easy to operate and cost effective.

The idea here is to connect DC solenoids valves at different nodes of the distribution pipe network and control these solenoid valves using timers.

The timer controller unit could be positioned in a specific position (control room) for enabling the farmers to set the timing as per the needs anytime, as required, and the signals could be appropriately transmitted to the relevant valves through wires for executing the controlled release of water across the given area.

The following circuit idea using the IC 4060 may be considered perfectly suitable for the proposed precision water management in irrigation system.

The circuit functioning can be understood with the help of the following points: 

Precision Water Management in Irrigation Systems


The IC 4060 can be seen configured in its standard timer/oscillator mode.

Pin#10 and pin#9 are associated with the time delay setting for the output pinouts 3, 13, 14 and 15.

The SW1 switch facilitates the time delay selection through the respective resistors which decides for how long the output of the IC may be rendered active, ensuring that the connected solenoid valve stays switched ON and in a water supplying mode only during this period of time.

The indicated timing resistors for SW1 are arbitrarily arranged and  must be appropriately calculated during the actual implementation as per the crop specifications, and water availability.

SW1 is specified for a 4 position selection which can be increased to more positions by simply using a switch with more number of contacts and by adding subsequent number of resistors in the appropriate order.

SW2 is also a rotary switch identical to SW1 and is positioned for selecting the switching mode of the solenoid valve.

Pin#3 provides a continuous ON mode for the valve for the selected time slot after which the valve is switched off until the next day, whereas pin13, 14, 15 provides an oscillating (ON/OFF/ON/OFF) activation mode for the solenoid so that the water is managed in a more controlled manner, however this may be optional if the valve nozzle is correctly dimensioned for a restricted flow as per the given criteria.

The whole system can be seen powered through a small solar panel which makes the entire system full automatic.

When dawn sets in, the solar panel voltage gradually rises and at a particular point reaches a 12V level activating the connected relay.

The relay contacts instantly connect the solar voltage with the circuit initializing the procedure wherein the IC pin#12 is reset by C2 forcing the IC to begin counting from zero.

All the outputs are rendered with a zero logic initially which makes sure that the TIP127 transistor commences with a switch ON condition and triggers the connected solenoid valve.

If SW2 is positioned with pin#3, the TIP127 and the valve stay switched ON continuously supplying water through the nozzle in a dripping manner until the set timing is elapsed and pin#3 becomes high.

As soon as pin#3 goes high the logic high instantly latches pin#11 of the IC and stops the IC from any further counting, freezing the procedure permanently for the day. The logic high is also transferred to the base of the TIP127 switching it OFF along with the valve system. The water supply to the crops at this moment gets halted.

At dusk when the sunlight weakens and gets below the relay holding level, the relay is switched OFF which also switches OFF the associated circuit stages, until the next day when the procedure undergoes the triggering of a fresh cycle.

PB1 is used for resetting the proceedings at anytime for enabling a new start for the circuit.

Many number of the above explained systems can be implemented at the specified nodes of the distribution pipe for achieving the desired precision water management in irrigation systems.

How to Calculate the Timing Resistors

The timing resistors associated with SW1 can be calculated with some experimentation as given below:

Any arbitrarily selected resistor may be initially switched with SW1, say for example we choose the 100k resistor as the reference.

Now switch ON the circuit to initiate the procedures, the red LED will be seen coming ON.

As soon as the circuit initiates monitor the timing using a stop watch or a clock and watch when the green LED turns ON switching OFF the red LED.

Note the timing achieved using the particular resistor which is 100K in this case.

Lets say it resulted in a delay period of 450 seconds, then taking this as the yardstick other values could be simply determined through a simple cross multiplication as given below:

100/R = 450/t

where R stands for the other unknown resistor value and "t" is the desired time delay for the solenoid valve.






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