{"schema_version":"1.0","canonical_url":"https://patentable.app/patents/US-9853723","patent":{"patent_number":"US-9853723","title":"Optical network system","assignee":null,"inventors":[],"filing_date":"2013-09-24T00:00:00.000Z","publication_date":"2017-12-26T00:00:00.000Z","cpc_codes":["H04B","H04B"],"num_claims":19,"abstract":"Disclosed is an optical network system including a upper network equipment, a lower network equipment, and a plurality of transfer network equipments connecting the upper network equipment and the lower network equipment through independent optical links, wherein the lower network equipment performs switching such that transmission and reception of an optical signal are performed through an optical link of a standby line when a failure occurs in at least one of an optical link used as a working line, an optical interface device associated with the working line in the upper network equipment, and a transfer network equipment associated with the working line."},"analysis":{"summary":"The Optical Network System patent addresses the critical issue of network downtime by introducing a redundant optical network architecture. The core innovation is an automatic failover mechanism that ensures continuous data transmission even in the event of a failure in the working line, associated optical interface device, or transfer network equipment. This system comprises upper network equipment, lower network equipment, and multiple transfer network equipments connected through independent optical links. The lower network equipment performs switching actions to reroute optical signals through a standby optical link when a failure is detected. This approach significantly reduces downtime and improves overall network resilience. The business value of this technology lies in its ability to minimize service disruptions and ensure business continuity. Industries that rely on high uptime, such as financial institutions, healthcare providers, and critical infrastructure operators, stand to benefit significantly from this innovation. The market opportunity for the Optical Network System is substantial, driven by the increasing demand for reliable and high-performance data transmission solutions. As businesses become increasingly reliant on data-intensive applications, the ability to maintain uninterrupted connectivity is paramount. This technology offers a competitive advantage by providing a robust and scalable solution that addresses this critical need. The Optical Network System represents a significant advancement in optical network technology, offering a robust and reliable solution for critical data transmission applications. Its potential to transform industries and improve network performance makes it a noteworthy development in the field of telecommunications. This innovation is poised to become a key component of modern digital infrastructure, enabling businesses to operate with greater confidence and efficiency.","layman_explanation":"The Optical Network System addresses the critical problem of network downtime, which can disrupt businesses and cause significant financial losses. Existing network solutions often lack robust redundancy mechanisms, making them vulnerable to failures. This patent offers a solution by creating a network that automatically switches to a backup line if the main line fails. The Optical Network System works by using multiple pathways for data transmission. Think of it like having two water pipes instead of one. If one pipe gets clogged, the water can still flow through the other pipe. In this system, if one of the optical links fails, the network automatically switches to a backup link, ensuring continuous data flow. This happens without any manual intervention, minimizing downtime. This innovation matters because it ensures that critical business operations can continue uninterrupted. For example, a hospital relying on this technology can maintain access to patient records even during a network outage. Similarly, a financial institution can continue processing transactions without disruption. The potential ROI for businesses implementing this system is substantial, driven by the reduction in downtime and the associated cost savings. The Optical Network System is also scalable and flexible, allowing businesses to adapt to changing network demands. Future applications of this technology include integration with 5G networks and the development of more advanced optical switching mechanisms. The market adoption timeline is expected to be rapid, driven by the increasing demand for reliable and high-performance data transmission solutions. The investment implications are significant, with opportunities for venture capital firms and strategic investors to capitalize on this growing market.","technical_analysis":"The Optical Network System patent presents a sophisticated technical solution to the problem of network downtime in optical communication systems. The system's architecture is based on a redundant design, incorporating multiple optical links and automatic failover mechanisms. The key components of the system include upper network equipment, lower network equipment, and transfer network equipments. The upper network equipment is responsible for initiating data transmission, while the lower network equipment manages the switching process. The transfer network equipments facilitate data transfer between the upper and lower network equipments. The system's implementation details involve sophisticated optical interface devices and control algorithms. The optical interface devices must be carefully designed to ensure high-performance data transmission and reliable signal detection. The control algorithms manage the switching process, detecting failures and initiating switchover actions. The system's performance characteristics are influenced by several factors, including the speed of the optical links, the efficiency of the switching mechanism, and the accuracy of the failure detection algorithms. The system's code-level implications involve the development of robust and efficient control software to manage the switching process. The software must be able to quickly detect failures and initiate switchover actions without introducing significant overhead. The integration patterns for the Optical Network System involve seamless integration with existing network infrastructure. The system must be able to operate in conjunction with other network devices and protocols, ensuring interoperability and compatibility. The architecture detailed in the Optical Network System patent is a significant advancement in optical network technology. It provides a robust and reliable solution for critical data transmission applications. Its potential to transform industries and improve network performance makes it a noteworthy development in the field of telecommunications. The implementation of this system would require careful planning and execution, but the benefits in terms of increased reliability and reduced downtime would be significant.","business_analysis":"The Optical Network System patent has significant business implications, offering a robust solution to the pervasive problem of network downtime. The market opportunity for this technology is substantial, driven by the increasing reliance on data-intensive applications and the growing demand for uninterrupted connectivity. The competitive advantages of this system lie in its automatic failover mechanism and redundant optical links, which ensure continuous data transmission even in the event of a failure. This technology offers a significant value proposition to businesses that rely on high uptime, such as financial institutions, healthcare providers, and critical infrastructure operators. The revenue potential for this system is substantial, driven by the sale of hardware, software, and services related to the implementation and maintenance of the technology. The business models for this system can range from direct sales to subscription-based services, depending on the specific needs of the customer. The strategic positioning of this technology is as a premium solution for businesses that require the highest levels of network reliability and availability. The ROI projections for this system are compelling, driven by the reduction in downtime and the associated cost savings. The market size for this technology is estimated to be in the billions of dollars, driven by the growing demand for reliable data transmission solutions. The competitive landscape for this technology includes traditional network equipment providers and emerging technology companies. The Optical Network System offers a unique value proposition by providing a complete solution for network redundancy and automatic failover. The system’s ability to seamlessly switch traffic to standby lines enables network operators to perform maintenance tasks on the working lines without interrupting service. This capability further enhances the overall efficiency and cost-effectiveness of the system. The implementation of this technology would require careful planning and execution, but the potential benefits in terms of increased reliability, reduced downtime, and improved customer satisfaction are substantial. The Optical Network System represents a significant investment opportunity for businesses looking to enhance their network infrastructure and ensure business continuity.","faqs":null,"topics":["optical network system","network redundancy","data transmission","automatic failover","telecommunications","optical","network","system"],"tech_cluster":null},"seo":{"title":"Optical Network System - Reliable Data Transmission Patent","description":"Discover the Optical Network System patent for seamless data transmission with automatic failover. Learn about its benefits and market impact.","keywords":["optical network system","network redundancy","data transmission","automatic failover","telecommunications","patent","patent US-9853723"]},"attribution":{"source":"Patentable","source_url":"https://patentable.app","canonical_url":"https://patentable.app/patents/US-9853723","license":"CC-BY-4.0-like","license_terms":"AI-generated analysis on this page (summary, layman_explanation, technical_analysis, business_analysis, faqs) may be reused with attribution and a visible link back to the canonical URL above. Patent abstracts, claims, and bibliographic data are USPTO public domain.","required_link":"https://patentable.app/patents/US-9853723","citation_suggestion":"Patentable. \"Optical network system\" (US-9853723). https://patentable.app/patents/US-9853723","copyright_holder":"Nomic Interactive Technology LLC"},"links":{"html":"https://patentable.app/patents/US-9853723","json":"https://patentable.app/api/llm-context/US-9853723","site":"https://patentable.app","llms_txt":"https://patentable.app/llms.txt"},"generated_at":"2026-06-06T12:36:00.154Z"}