Dahua Technology Intruder Detectors & Detection Systems(1)
System Overview Adopt 24 GHZ radar chip for 24/7 all-weather high-accuracy detection in the range of 120 m/120°. Support radar-PTZ smart tracking, compatible with common Dahua speed domes. With radar detection and intelligent algorithms, ultra-low false positives and zero false negatives are achieved around the clock. Multiple PTZ cameras can be linked to one radar, and wide range global arming and detail tracking is realized simultaneously. The product is widely applied to various perimeter and intrusion arming sites such as villas, warehouses, prisons, airports, and oilfields to provide users with safer and more valuable security protection solutions. Functions K-band DetectionAdopt 24 GHz radar chip for detection with long distance, high accuracy, wide range, and 24/7 all weathers to realize ultra-low false positives and zero false negatives in armed regions. Radar+PTZ Smart TrackingSupport linkage between radar and common Dahua speed domes. Multiple speed domes can be linked with one radar (link up to 3 speed domes on web manager, and up to 8 on platform). Both radar and cameras can be installed separately. Multi Level Perimeter ProtectionSupport region setting with different alarm priority, external alarm linkage, human and vehicle filtering, and vehicle detection with low and medium speed. Front-end PTZ ControlLow delay with radar directly controlling camera tracking. Display radar-PTZ linkage on web manager, and one radar can link with multiple cameras. Video stream acquisition, and map and trajectory display on NVR or platform is also supported. Intelligent Algorithm of RadarIntelligent algorithm is used to identify complex scenes and achieve high accuracy in different scenarios. Alarm is triggered once radar detection range is covered or radar is rotated substantially. Support human and vehicle recognition. Centralized Platform ManagementSupport radar configurations and management of multiple radars on platforms. Display radar-PTZ smart tracking on the map. Ingress Protection and CertificationsMeet IP67 and IK09 ingress protection, and FCC ID and CE RED standards.Add to Compare
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On November 2019 in Stockton, California, surveillance footage found that vandals shot out glass windows and doors in many places in a small business complex (FOX40). The intruders broke in only to leave with nothing, proving their intent was solely to vandalize the property. Meanwhile, it was reported that a trio of ATM thieves struck around 9 times across many different locations inside Brooklyn and Queens within just over a month in fall 2019 (ATM Marketplace). On average, the cost of vandalism to SMB is around $3,370 per incident (US Small Business Administration), including a staggering 692 vehicle vandalism claims per day. Likewise, the average cost of theft to SMB is about $300 per shoplifting incident and $1,500 per employee theft incident, which accounts for 38% and 34.5% of all theft instances, respectively (National Retail Security Survey). High-performance artificial intelligent systems can automate the monitoring tasks Vandalism and theft have proven time and time again to be inconvenient and deconstructively harmful towards SMB. However, these financial burdens can be prevented with the use of the right security system. AI-based security systems with Deep Learning contain many features that many SMB owners find advantageous in their pursuit to stop unwarranted and unwanted money loss. Intrusion and loitering detection The first of many features that can help with vandalism and theft prevention is Intrusion Detection. High-performance artificial intelligent systems can automate the monitoring tasks for high-risk sites to provide a high level of security and security personnel monitoring efficiency. Traditional intrusion detection systems detect objects based on size and location, but they do not recognise the type of objects. Now, Intrusion Detection (Perimeter Protection) systems with cutting-edge, built-in AI algorithms to recognise a plethora of different object types, can distinguish objects of interest, thus significantly decreases the false-positive intrusion rate. The more advanced AI-based systems, like those we offered at IronYun, enable the users to draw ROIs based on break-in points, areas of high-valuables, and any other preference to where alerts may be beneficial. Similarly, AI Loitering Detection can be used to receive alerts on suspicious activity outside any given store. The loitering time and region of interest are customisable in particular systems, which allows for a range of detection options. Advanced loitering detection software as such can detect and trigger real-time alerts for both people loitering and/or vehicles that are illegally parked in certain areas of interest. A benefit, which only certain advanced systems contain, is the ability to send trigger actions to 3rd-party systems in reaction to receiving an alert of loitering and/or intrusion detection. These trigger actions can be set to contact authorities immediately and/or trigger a scare tactic alarm or announcement to intruder/loiterer. Certain Face Recognition and License Plate Recognition software can record individual people/vehicles Face and license plate recognition In addition to the activity detection solutions, certain Face Recognition and License Plate Recognition software can record individual people/vehicles and use pre-configured lists to identify particular faces or plates that may be of interest, such as those in watchlists. These systems can also enable the users to upload images of faces not in the lists and search for them in the camera recording. For instance, if a person is detected several times loitering outside a store, one may save one of the detection photos into the watchlist, and set up an alert when said face is recognised again outside the building in the future. The alerts will help to deter and prevent vandalism or theft, and notify the authorities to the scene before the troublemaker completes the act. The main attributes of high-performance Face Recognition systems which maximise assistance with vandalism and theft management include: Face match rate > 90% with good camera angles and lighting. Processing multiple streams and multiple faces per image. Live face extraction and matching to databases of thousands of faces within 3 seconds. State-of-the-art AI security software with Deep Learning allows the user to no longer need to install special LPR camerasIf the watchlist individual is wearing a mask or their face is not in view of the camera, their license plate may be a good indicator. If a particular car is detected several times loitering in the parking lot or street outside a store, the user can set the alerts for such car to get notified in the future. With an AI solution like this, common street cameras should be equipped with LPR capabilities. So, state-of-the-art AI security software with Deep Learning allows the user to no longer need to install special LPR cameras. High-performance alert mechanisms A high-performance AI solution, in addition to having high accuracy, should be able to: Easily integrate with 3rd-party systems Work well with all ONVIF IP cameras including infrared and thermal ones (for Intrusion detection) Analyses video streams in real time and trigger alerts within a few seconds Send alerts to multiple VMSs, connect with signalling devices such as loud speakers or flashing lights Send email notifications to security staff and police departments Send notification on mobile device using AI NVR mobile app Maintains a record of all alerts to provide evidence of intrusion and loitering instances for police and insurance agencies. To assist in theft and vandalism prevention, AI-based security systems with deep learning will do all of the tedious work for you. Their low cost and high performance also make them the most accessible security solutions in the market with large return on investment. Stopping crimes is a difficult, ongoing challenge, but with the right AI software, business vendors and police departments can do so with more ease.
There’s a lot of hype around the term ‘digital transformation.’ For some, it’s the integration of digital technology into everyday tasks. For others, it’s the incorporation of innovative processes aimed at making business optimisation easier. In most cases, digital transformation will fundamentally change how an organisation operates and delivers value to its customers. And within the security realm, the age of digital transformation is most certainly upon us. Technology is already a part of our day-to-day lives, with smart devices in our homes and the ability to perform tasks at our fingertips now a reality. No longer are the cloud, Internet of Things (IoT) and smart cities foreign and distant concepts full of intrigue and promise. Enhancing business operations We’re increasingly seeing devices become smarter and better able to communicate with each other These elements are increasingly incorporated into security solutions with each passing day, allowing enterprises the chance to experience countless benefits when it comes to enhancing both safety and business operations. The term ‘connected world’ is a derivative of the digital transformation, signifying the increasing reliance that we have on connectivity, smart devices and data-driven decision-making. As we become more familiar with the advantages, flaws, expectations and best practices surrounding the connected world, we can predict what issues may arise and where the market is heading. We’re increasingly seeing devices become smarter and better able to communicate with each other through the IoT to achieve both simple goals and arduous tasks. Within our homes, we’re able to control a myriad of devices with commands (‘Hey Google...’ or ‘Alexa...’), as well as recall data directly from our mobile devices, such as receiving alerts when someone rings our doorbell, there’s movement in our front yard or when a door has been unlocked. Analytics-driven solutions The focus is now shifting to the business impacts of connectivity between physical devices and infrastructures, and digital computing and analytics-driven solutions. Within physical security, connected devices can encompass a variety of sensors gathering massive amounts of data in a given timeframe: video surveillance cameras, access control readers, fire and intrusion alarms, perimeter detection and more.As the data from each of these sensors is collected and analysed through a central platform, the idea of a connected world comes to fruition, bringing situational awareness to a new level and fostering a sense of proactivity to identifying emerging threats. The connected world, however, is not without its challenges, which means that certain considerations must be made in an effort to protect data, enhance structured networking and apply protective protocols to developing technology. Physical security systems We can expect to see the conversations regarding data privacy and security increase as well As the use of connected devices and big data continue to grow, we can expect to see the conversations regarding data privacy and security increase as well. Connectivity between devices can open up the risk of cyber vulnerabilities, but designing safeguards as technology advances will lessen these risks. The key goal is to ensure that the data organisations are using for enhancement and improvements is comprehensively protected from unauthorised access. Manufacturers and integrators must be mindful of their products' capabilities and make it easy for end users to adhere to data sharing and privacy regulations. These regulations, which greatly affect physical security systems and the way they're managed, are being implemented worldwide, such as the European Union's General Data Protection Regulation (GDPR). In the United States, California, Vermont and South Carolina have followed suit, and it can be expected that more countries and U.S. states develop similar guidelines in the future. Technology is already a part of our day-to-day lives, with smart devices in our homes and the ability to perform tasks at our fingertips now a reality Automatic security updates Mitigating the concerns of the ‘connected world’ extends beyond just data privacy. IoT technology is accelerating at such a pace that it can potentially create detrimental problems for which many organisations may be ill-prepared - or may not even be able to comprehend. The opportunities presented by an influx of data and the IoT, and applying these technologies to markets such as smart cities, can solve security and operational problems, but this requires staying proactive when it comes to threats and practicing the proper protection protocols. As manufacturers develop devices that will be connected on the network, integrating standard, built-in protections becomes paramount. This can take the form of continuous vulnerability testing and regular, automatic security updates. Protocols are now being developed that are designed to ensure everything is encrypted, all communications are monitored and multiple types of attacks are considered for defensive purposes to provide the best security possible. IoT-connected devices Hackers wishing to do harm will stop at nothing to break into IoT-connected devices Built-in protection mechanisms send these kinds of systems into protection mode once they are attacked by an outside source. Another way for manufacturers to deliver solutions that are protected from outside threats is through constant and consistent testing of the devices long after they are introduced to the market. Hackers wishing to do harm will stop at nothing to break into IoT-connected devices, taking every avenue to discover vulnerabilities. But a manufacturer that spends valuable resources to continue testing and retesting products will be able to identify any issues and correct them through regular software updates and fixes. ‘IoT’ has become a common term in our vocabularies and since it’s more widely understood at this point and time, it's exciting to think about the possibilities of this revolutionary concept. Providing critical insights The number of active IoT devices is expected to grow to 22 billion by 2025 — a number that is almost incomprehensible. The rise of 5G networks, artificial intelligence (AI) and self-driving cars can be seen on the horizon of the IoT. As more of these devices are developed and security protocols are developed at a similar pace, connected devices stand to benefit a variety of industries, such as smart cities. Smart cities rely on data communicated via the IoT to enhance processes and create streamlined approaches Smart cities rely on data communicated via the IoT to enhance processes and create streamlined approaches to ensuring a city is well-run and safe. For example, think of cameras situated at a busy intersection. Cameras at these locations have a variety of uses, such as investigative purposes in the event of an accident or for issuing red-light tickets to motorists. But there are so many other possible purposes for this connected device, including providing critical insights about intersection usage and traffic congestion. These insights can then be used to adjust stoplights during busy travel times or give cities valuable data that can drive infrastructure improvements. Physical security market The impact of connected devices on cities doesn’t stop at traffic improvement. The possibilities are endless; by leveraging rich, real-time information, cities can improve efficiencies across services such as transportation, water management and healthcare. However, stringent protections are needed to harden security around the networks transmitting this kind of information in an effort to mitigate the dangers of hacking and allow this technology to continuously be improved. Whether you believe we’re in the midst of a digital transformation or have already completed it, one thing is certain: businesses must begin thinking in these connectivity-driven terms sooner rather than later so they aren’t left behind. Leveraging smart, connected devices can catapult organisations into a new level of situational awareness, but adopting protections and remaining vigilant continues to be a stalwart of technological innovation within the physical security market and into the connected world.
Johnson Controls recently unveiled the findings of its 2018 Energy Efficiency Indicator (EEI) survey that examined the current and planned investments and key drivers to improve energy efficiency and building systems integration in facilities. Systems integration was identified as one of the top technologies expected to have the biggest impact on the implementation in smart buildings over the next five years, with respondents planning to invest in security, fire and life-safety integrations more so than any other systems integration in the next year. As advanced, connected technologies drive the evolution of smart buildings, security and safety technologies are at the center of more intelligent strategies as they attribute to overall building operations and efficiencies. SourceSecurity.com spoke with Johnson Controls, Building Solutions, North America, VP of Marketing, Hank Monaco, and Senior National Director of Municipal Infrastructure and Smart Cities, Lisa Brown, about the results of the study, smart technology investments and the benefits of a holistic building strategy that integrates security and fire and life-safety systems with core building systems. Q: What is the most striking result from the survey, and what does it mean in the context of a building’s safety and security systems? The results show an increased understanding about the value of integrating safety and security systems with other building systems Hank Monaco: Investment in building system integration increased 23 percent in 2019 compared to 2018, the largest increase of any measure in the survey. When respondents were asked more specifically what systems they we planning to invest in over the next year, fire and life safety integration (61%) and security system integration (58%) were the top two priorities for organisations. The results show an increased understanding about the value of integrating safety and security systems with other building systems to improve overall operations and bolster capabilities beyond the intended function of an individual system. Q: The survey covers integration of fire, life safety and security systems as part of "smart building" systems. How do smarter buildings increase the effectiveness of security and life safety systems? Hank Monaco: A true “smart building” integrates all building systems – security, fire and life-safety, HVAC, lighting etc. – to create a connected, digital infrastructure that enables individual technologies to be more intelligent and perform more advanced functions beyond what they can do on their own. For example, when sensors and video surveillance are integrated with lighting systems, if abnormal activity is detected on the building premise, key stakeholders can be automatically alerted to increase emergency response time. With integrated video surveillance, they also gain the ability to access surveillance footage remotely to assess the situation. When sensors and video surveillance are integrated with lighting systems abnormal activity on the premise can automatically be detected Q: How can integrated security and life safety systems contribute to greater energy efficiency in a smart building environment? Hank Monaco: Security, fire and life-safety systems can help to inform other building systems about how a facility is used, high-trafficked areas and the flow of occupants within a building. Integrated building solutions produce a myriad of data that can be leveraged to increase operational efficiencies. From an energy efficiency standpoint, actionable insights are particularly useful for areas that are not frequently occupied or off-peak hours as you wouldn’t want to heat or cool an entire building for just one person coming in on the weekend. When video surveillance is integrated with HVAC and lighting systems, it can monitor occupancy in a room or hallway. The video analytics can then control the dimming of lights and the temperature depending on occupant levels in a specific vicinity. Similarly, when access control systems are integrated with these same systems, once a card is presented to the reader, it can signal the lights or HVAC system to turn on. In this example, systems integration can ultimately help enable energy savings in the long run. Security and life safety systems contribute to help enable greater energy efficiency and energy savings in the long run Q: What other benefits of integration are there (beyond the core security and life safety functions)? Hank Monaco: Beyond increased security, fire and life-safety functions, the benefits of systems integration include: Increased data and analytics to garner a holistic, streamlined understanding of how systems function and how to improve productivity Ability to track usage to increase efficiency and reduce operational costs Enhanced occupant experience and comfort Increased productivity and workflow to support business objectives Smart-ready, connected environment that can support future technology advancements Q: What lesson or action point should a building owner/operator take from the survey? How can the owner of an existing building leverage the benefits of the smart building environment incrementally and absent a complete overhaul? Lisa Brown: Johnson Controls Energy Efficiency Indicator found that 77% of organisations plan to make investments in energy efficiency and smarter building technology this year. This percentage demonstrates an increased understanding of the benefits of smart buildings and highlights the proactive efforts building owners are taking to adopt advanced technologies. There is an increased understanding that buildings operate more effectively when different building systems are connected As smart buildings continue to evolve, more facilities are beginning to explore opportunities to advance their own spaces. A complete overhaul of legacy systems is not necessary as small investments today can help position a facility to more easily adopt technologies at scale in the future. As a first step, it’s important for building owners to conduct an assessment and establish a strategy that defines a comprehensive set of requirements and prioritises use-cases and implementations. From there, incremental investments and updates can be made over a realistic timeline. Q: What is the ROI of smart buildings? Lisa Brown: As demonstrated by our survey, there is an increased understanding that buildings operate more effectively when different building systems are connected. The advanced analytics and more streamlined data that is gathered through systems integration can provide the building-performance metrics to help better understand the return on investment (ROI) of the building systems. This data is used to better understand the environment and make assessments and improvements overtime to increase efficiencies. Moreover, analytics and data provide valuable insights into where action is needed and what type of return can be expected from key investments.
With a history of over 20 years, the Cedr factory is one of the leading manufacturers of wooden doors, kitchen cabinets and other wood products in Russia. Today, it has a few of its own modern and automated plants with a wide range of products and innovative production approaches. For such a modern wood factory, safety is of paramount concern. Advanced video surveillance systems need to be introduced in the internal and external areas of the factory. Due to the extremely high risk of fire in a wood factory, the customer has high demands for a smart system to keep sufficient video backup as evidence. Specifically, the system needs to be capable of storing up to 30 days of videos, with copies stored on a separate network at the same time so that the videos can be safely saved under different network conditions. Mini-Bullet Network Camera With IR illumination, detailed images can be captured under low light conditions or total darkness A total of 400 IP cameras from Dahua Technology were installed inside of the factory for general monitoring, including DH-IPC-HFW1230SP, DH-IPC-HDPW1231FP-AS and DH-IPC-HFW2231TP-ZS. In this chain factory, DH-IPC-HFW1230SP was used to monitor machine operation, and DH-IPC-HDPW1231FP-AS was used to monitor corridors. These two types of cost-effective Mini-Bullet Network Camera feature 2MP resolution with a motorised 2.8mm/3.6mm fixed lens. With IR illumination, detailed images can be captured under low light conditions or total darkness. The cameras’ Smart IR technology adjusts the intensity of camera's infrared LEDs to compensate the distance of an object. Smart IR technology prevents IR LEDs from whitening out images as they come closer to the camera. Excellent light sensitivity In order to ensure the safety of staff and vehicles in the factory vicinity, DH-IPC-HFW2231TP-ZS was installed outside the factory to monitor large and open scenes. This IR Megapixel Vari-focal Camera features 2MP resolution with a 2.7mm ~ 13.5mm vari-focal lens, meeting monitoring needs of different distances. For challenging ultra-low light environments, IPC-HFW2231TP-ZS powered by Dahua’s Starlight Technology offers excellent light sensitivity, capturing color details in low light conditions down to 0.006lux. The camera uses a set of optical features to balance light throughout the scene, resulting in clear images in dark environments. ±25% input voltage tolerance These cameras are ideal choices for installation even in the most unforgiving environments In addition, these cameras allow ±25% input voltage tolerance, suitable for the most unstable conditions in outdoor applications. Its 2KV lightning rating provides effective protection against lightning for both the camera and its structure. Certified and subjected to rigorous dust and immersion tests (IP67), these cameras are ideal choices for installation even in the most unforgiving environments. In order to help the customer improve the security of video storage, three types of Dahua 4K H.265 Network Video Recorders – adopting powerful processors with up to 4K resolution for preview and playback – are used in the factory to store 10-day videos, which can provide critical details for identification. Real time monitoring On the other hand, a 48-HDD Enterprise Video Storage is used to separately store 30-day videos at the headquarters in case the factory area videos are damaged. It supports 512 channels of IP camera inputs and 1024Mbps incoming/recording bandwidth, offering an unparalleled storage performance. Moreover, DHI-DSS4004 was selected as the central server, through which all videos are integrated in one system for a unified operation and management in the headquarters’ control room. The vast factory vicinity is now equipped with Dahua video surveillance system, enabling all security checkpoints to monitor the factory in real time. At the same time, the massive video storage and backup allows the administrator to review emergency situations if necessary. The advanced solution from Dahua Technology has created a safe and smart factory for the customer, assisting them in improving their security level during production.
Established by the President of the Republic of Azerbaijan, ADA University is a state higher education institution engaged in the delivery of undergraduate and graduate degree programs in addition to research advancement. The university started the construction of a new teaching building in 2017. Its multimedia classroom required 40 square meters of LED screens to provide students with advanced and modern teaching equipment. Spread spectrum VFE technology 42 m2 PHSA1.6-MH indoor fine pixel LED screens from Dahua Technology were seamlessly spliced and installed at the multimedia classroom of ADA University. The solution features single control chip with only one IC. The product adopts spread spectrum VFE technology to achieve higher refresh rate, while its wide colour range provides excellent high restoration and color uniformity. It can also achieve high contrast, low failure rate and low light reduction. The brightness of the LED screens can be adjusted within 50-800 nits without losing grey levels With wide current regulation technology, the brightness of the LED screens can be adjusted within 50-800 nits without losing grey levels, which is applicable in different environments. A centralised power supply was also deployed to lower power consumption. In addition to providing the devices, staff from Dahua Delivery Department were also responsible for on-site installation, offering operation and after-sales training to both distributor and staff of ADA University. First LED screen project The customer was very satisfied with the successful delivery of the project. The students of ADA University can now enjoy vivid and colorful videos and images through the LED screen, bringing a pleasant viewing experience for teachers and students. As the first LED screen project in Azerbaijan, Dahua Technology’s complete solution and excellent service from pre-sales to after-sales greatly impressed the customer, and they expressed their desire to choose Dahua Technology in their other similar projects in the future. “Dahua Technology has a professional technical team, which provides us with high-quality service. We are very satisfied with Dahua Technology’s products. The professional training provided to us is very helpful for our operation and maintenance. We believe that we will continue to cooperate with Dahua Technology in the future,” said Alekberov Mukhdar, Electrical Engineer of ADA University.
Dahua Technology, a video-centric smart IoT solution and service provider, successfully launched its brand new solution for smart night surveillance, the WizSense Full-Colour Series Network Camera. Unparalleled night surveillance This new camera series embraces Dahua Technology’s four major technological innovations: Large Aperture Lens - Features F1.0 super large aperture that collects 2.5 times amount of light compared with F1.6 aperture, creating brighter image. High-Performance Sensor - Offers 30% photosensitive capacity increase through its larger sensors. Advanced ISP - Dahua ISP 4.0 greatly improves Signal-to-Noise Ratio (SNR) and colour reproduction. Warm Light - The weighted radiance of blue light is 40% below European Union standards, which presents lower light pollution and less harm to human eyes. With these four technological advancement, Dahua Full-Colour Camera delivers unparalleled performance at night. It achieves 24/7 monitoring by capturing vivid details and presenting coloured images in low light conditions. General IR Camera vs. Full-Colour Camera At the same time, it provides warm and smart auxiliary light to guarantee image clarity and quality even in total darkness. Thanks to its built-in AI functions, higher monitoring accuracy at night is guaranteed. Dahua Technology delivers both SMD and Full-Colour for night surveillance advantages to its customers. On one side, SMD can easily process visual information collected by Full-Colour Camera. On the other side, the Full-Colour Camera significantly increases the accuracy of SMD at night (see table below). SMD accuracy In addition, Dahua SMD has the ability to effectively filter false alarms triggered by pets, leaves, branches, raindrops, lights and other irrelevant objects, and only focus on real threats, human and vehicle. SMD Accuracy at Night Product Human Accuracy Vehicle Accuracy Traditional Camera ≥90% ≥90% Full-Colour Camera ≥98% ≥98% *Figures are affected by different lab conditions. Utilising the two advanced technologies, Dahua WizSense Full-Colour Camera can accommodate a wide range of application scenarios, such as museums, cinemas, factories, villas, schools, etc. Users no longer need to worry about the high cost of patrolling or leaving their property unguarded at night. This solution is fully capable of meeting the demands of ordinary users, delivering a safer and cost-effective solution for night surveillance.
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