A Comprehensive Range of Business Radio Solutions That Meet Your Needs Flexibly
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Washington Statewide Communications Interoperability Plan
Washington Statewide Communications Interoperability Plan Prepared by: Washington State Interoperability Executive Committee (SIEC) 1110 Jefferson Street SE PO Box 42445 Olympia, WA 98504-2445 April 4, 2008 Unlimited Distribution Washington Statewide Communications Interoperability Plan This page is intentionally blank. i Washington Statewide Communications Interoperability Plan Record of Change Change Date Description Change Date Signature No. Received DHS approval. 1 April 4, 2008 Removed line number, watermark, April 14, 2008 Scott Miller and footer information. ii Washington Statewide Communications Interoperability Plan 1 Washington Statewide Communications Interoperability Plan Executive Overview The ultimate purpose of the Washington Statewide Communications Interoperability Plan (SCIP) is to establish a future vision for communications interoperability and align emergency response agencies with that vision by creating goals, objectives, and initiatives that achieve improved public safety communications. The Washington SCIP serves as a common reference for all stakeholders to use as a current source of information about the status of statewide communications interoperability. The process employed to produce this plan followed a bottom-up approach that sought out the input and advice of the state’s first responder and emergency response communities. It is the intent of the statewide strategic planning effort to provide an ongoing opportunity for all local, tribal, federal, and non-governmental public safety and emergency responder agencies to share their communications needs, discuss mutual solutions, share successful implementations, and collaborate. Subsequent versions of the Washington SCIP will set new objectives, implement interoperability solutions, and measure progress toward achievement of a highly efficient and cost effective means of statewide interoperability. The Washington SCIP is written to address the criteria1 for interoperability plans established by the U.S. -
Antrim County Board of Commissioners Ed Boettcher, Chairman
Antrim County Board of Commissioners Ed Boettcher, Chairman Thursday, May 21, 2020 @ 9:00 a.m. Zoom Webinar Please click this URL to join: https://msu.zoom.us/j/92349486447 Password: Antrim Or join by phone (for higher quality, dial a number based on your current location): US: +1 301 715 8592 or +1 312 626 6799 or +1 646 876 9923 or +1 253 215 8782 or +1 346 248 7799 or +1 669 900 6833 Webinar ID: 923 4948 6447 Facebook Livestream https://www.facebook.com/AntrimCountyMI/ *If you require auxiliary aid assistance, contact (231)533-6265. CALL TO ORDER: 1. OPENING CEREMONIES OR EXERCISES (Pledge of Allegiance, Invocation, Moment of Silence) 2. PUBLIC COMMENT Because of the COVID-19 circumstances, the Board of Commissioners meeting is being held remotely online utilizing Zoom Webinar. We will still hold Public Comment, those attending through Zoom by digital device or telephone will be given time to speak one at a time. Another option for your comments to be heard is to email them to the County Administrative Office, [email protected], before 5:00 p.m. on May 20, and they will be read aloud during the Public Comment portion of the meeting. Thank you for your patience and understanding as we all adjust to minimize the COVID- 19 spread and keep our community safe. 3. APPROVAL OF AGENDA 4 4. APPROVAL OF MINUTES FROM: 4 A. May 7, 2020, Special Meeting B. May 13, 2020, Special Meeting 5. COMMUNICATIONS/NOTICES 6. LIAISON REPORTS 7. COMMITTEE REPORTS (AS NEEDED) 8. -
Federal Communications Commission DA 17-1157 Before the Federal Communications Commission Washington, D.C. 20554 in the Matter O
Federal Communications Commission DA 17-1157 Before the Federal Communications Commission Washington, D.C. 20554 In the Matter of ) ) STATE OF ALASKA ) File No. 0007652388 ) Request For Waiver of Section 90.20(c)(3) of the ) Commission’s Rules ) ) ORDER Adopted: November 30, 2017 Released: November 30, 2017 By the Chief, Policy and Licensing Division, Public Safety and Homeland Security Bureau: I. INTRODUCTION 1. In this Order we grant a request by the State of Alaska (Alaska) for a waiver of Section 90.20(c)(3) of the Commission’s rules to operate a new VHF base station on four channels using non- standard channel centers. 1 II. BACKGROUND 2. Alaska operates a wide area VHF public safety trunked radio system known as the Alaska Land Mobile Radio System (ALMR) which serves local, state and federal agencies throughout the State of Alaska using a single shared infrastructure.2 Users of the ALMR system share repeaters, RF sites, towers, and dispatch centers.3 3. The ALMR system operates using Project 25 technology and pairs approximately 1.5 megahertz of spectrum from the Public Safety Pool (150 MHz band) with an equal amount of spectrum from the Federal Government (138-144 MHz band) to create 110 channel pairs (12.5 kHz bandwidth).4 Channels from the Public Safety Pool are used in the ALMR system for base station transmissions and channels from the Federal Government band are used for mobile station transmissions.5 4. When it originally designed its ALMR system, Alaska noted that it had some difficulty pairing Public Safety Pool spectrum with spectrum from the Federal Government because channels in the Public Safety Pool from the 150 MHz band are assigned using channel centers spaced every 7.5 kHz whereas the channels from the Federal Government from the 138-144 MHz band are assigned using 1 See ULS application number 0007652388, filed February 7, 2017 (Alaska Application). -
Intracom Systems
IntraCom Systems www.intracomsystems.com The Company WHO WE ARE Founded in 2006 Team with deep commercial-grade intercom technology expertise Vision to disrupt hardware-based matrix intercom market & create new, software-based platform with broader functionality, flexibility and attractive unit economics VCOM is a mission-critical, complex communication platform Based on Voice over Internet Protocol (VOIP) technologies using Internet-enabled devices (computers, smart phones, tablets) and interoperable with legacy communications hardware systems Co-founders Stephen Brand and John Jurrius Lead rapid technology innovation and adoption by market leading customers such as NASA, NBC Universal, Eurovision, Disney, and Wells Fargo VCOM re-defines many command and control communication applications (via economics, functionality, and interoperability) Patented technology and architecture U.S. #8,660,039: MULTI- CHANNEL MULTI-ACCESS VOICE OVER IP INTERCOMMUNICATION SYSTEMS AND METHODS 2 Our Customers SAMPLING OF KEY CUSTOMERS 3 VCOM Defined VCOM VIRTUAL COMMUNICATIONS VCOM is a flexible, highly interoperable, IP-software communications platform for professional and mission critical applications Dynamically configurable to emulate many communication scenarios Matrix intercom, Hoot-N-Holler, Wireless Intercom, Two-Way Radio, SIP/VOIP/PSTN telephony, etc. Bridges together traditional Intercoms, Phone Systems, Two-Way Radios, Public Address (PA) Systems, GSM/4G/LTE Devices, and more Operates over Public/Private Networks, Cellular Data, -
Private Land Mobile Radio Services: Background
Federal Communications Commission Wireless Telecommunications Bureau Staff Paper Private Land Mobile Radio Services: Background December 18, 1996 Michele Farquhar, Chief, Wireless Telecommunications Bureau Project Team David Wye John Borkowski Eli Johnson Sean Fleming Federal Communications Commission Wireless Telecommunications Bureau Staff Paper Private Land Mobile Radio Services: Background December 18, 1996 Michele Farquhar, Chief, Wireless Telecommunications Bureau Project Team David Wye John Borkowski Eli Johnson Sean Fleming Federal Communications Commission Wireless Telecommunications Bureau Staff Paper The authors wish to gratefully acknowledge the assistance of the many representatives of the private wireless community who contributed to this Staff Paper. Within the Federal Communications Commission, Wireless Telecommunications Bureau, many people were also generous with their time and attention, and contributed valuable insights and comments. The information, perspectives, and suggestions all these contributors provided greatly improved the final product. The views expressed in this Staff Paper do not necessarily represent the views of the Federal Communications Commission or any individual Commissioner. This Staff Paper is not a statement of policy by the Commision, nor does it bind the Commission in any way. We do not intend by this Paper to prejudge the outcome of any proceeding that is now or may in the future come before the Commission. Executive Summary Since the 1920s, the private land mobile radio services (PLMRS) have been meeting the internal communication needs of private companies, state and local governments, and other organizations. These services provide voice and data communications that allow entities to control their business operations and production processes, protect worker and public safety, and respond quickly in times of natural disaster or other emergencies. -
Trbonet Swift A100 User Manual
Radio-over-IP Gateway TRBOnet Swift A100 User Manual World HQ US Office Internet Telephone Neocom Software Neocom Software EMEA: +44 203 608 0598 8th Line 29, Vasilyevsky Island 15200 Jog Road, Suite 202 Email: [email protected] Americas: +1 872 222 8726 St. Petersburg, 199004, Russia Delray Beach, FL 33446, USA WWW.TRBONET.COM APAC: +61 28 6078325 Notices This document is for informational purposes only. Neocom software, Ltd offers no warranties, express or implied, in this document. Neocom and the Neocom logo, TRBOnet and the TRBOnet logo are either registered trademarks or trademarks of Neocom software, Ltd. MOTOROLA, MOTO, MOTOROLA SOLUTIONS and the Stylized M logo are trademarks or registered trademarks of Motorola Trademark Holdings, LLC. Microsoft, Windows, SQL Server and the .NET logo are either registered trademarks or trademarks of Microsoft Corporation in the United States and/or other jurisdictions. Other product or company names mentioned herein may be trademarks of their respective owners. © 2020 by Neocom Software, Ltd. All rights reserved. This document was last revised on May 18, 2020. Contents 1 Introduction ........................................................................................................................................................1 1.1 About This Document .......................................................................................................................1 1.2 About TRBOnet Swift .........................................................................................................................1 -
Roip Gateways
Challenging Communication Boundaries RoIP Gateways Radio over IP for Optimal Analog & Digital Radio Network Performance Radio over IP (RoIP) adio over IP offers a cost effective way to interconnect radio systems and operators together. It is a technology that Renhances and adds value to radio communications networks. The IPR Range of Gateways provide IP access to existing analog radios whilst the DRG Range provides advanced networking features and interoperability to digital radios. Omnitronics gateways are designed to be used in conjunction with our range of Dispatch Solutions. They provide operators with voice and data from the radios, enabling operators to take advantage of the advanced functionality each radio provides. Alternatively, the gateways may be used without dispatch consoles to provide site–to-site connections over IP. All of the Omnitronics gateways are vendor agnostic and will generally work with most brands and models of two-way radio. BENEFITS OF OMNITRONICS ROIP GATEWAYS • Lower Overheads: Through the use of an existing IP Infrastructure and replacement of expensive leased lines & microwave links. Additionally, gateways allow radios with point-to-point protocols to be shared amongst a number of operator positions. • Increased Interoperability: Across multiple frequency bands, radio technologies (analog & digital; conventional & trunked) and telephony. • Network Flexibility: Simple addition of repeater sites and dispatch locations across wide geographical areas. • IT Networking Choice: By providing a translation of communications between the radio side protocol and the operator/console, protocols and mechanisms that are Internet friendly and designed to work through routers can be used at the operators side. • High Security: Separating the radio IP communications from the console IP network, creates a natural firewall between the consoles and the radio system. -
Motobridge Ip Interoperability Solution Proven Mission Critical Performance You Can Count On
SOLUTION BRIEF MOTOBRIDGE™ IP INTEROPERABILITY SOLUTION MOTOBRIDGE IP INTEROPERABILITY SOLUTION PROVEN MISSION CRITICAL PERFORMANCE YOU CAN COUNT ON Communication interoperability is a well-recognized imperative for public safety, homeland security, law enforcement, or any other organization that has a need to share intelligence, coordinate plans, and mount successful joint operations with others operating on disparate systems. Federal, state and local agencies with incompatible voice systems can communicate with a MOTOBRIDGE radio over IP interoperability solution. MOTOBRIDGE is an easy and fast way to establish communications between disparate systems in support of day-to-day operations and emergency response. Any number of connections between disparate radio and phone systems can be activated quickly. POWERFUL FLEXIBLE SOLUTION • Connectivity and control for smart phones More than a simple audio patch, traditional IP gateway, • Over-IP radio voting or pure software solution, MOTOBRIDGE is a flexible • Network management solution with capabilities that allow it to fulfill a more With Motorola, there is no reason to reach out to advanced role in an organization’s interoperability multiple providers to enable your organization to meet strategy. In addition to providing interoperability across its interoperability needs. We can provide a complete disparate networks, MOTOBRIDGE provides: interoperability solution, including access radios, industry • IP dispatch functionality leading maintenance and installation services, and 24/7 • Full-duplex conferencing system monitoring. • Direct phone access to radio networks SOLUTION BRIEF MOTOBRIDGE™ IP INTEROPERABILITY SOLUTION SUPERIOR MISSION CRITICAL DESIGN When an operation is mission critical, it is important that the supplier of your interoperability solutions understands public safety communications. MOTOBRIDGE is a product designed from the ground up for interoperability across IP networks, when mission critical reliability and performance counts. -
Zastosowanie Technologii Radio Over Ip W Systemach Pmr
Piotr Kaczorek Akademia Morska w Gdyni ZASTOSOWANIE TECHNOLOGII RADIO OVER IP W SYSTEMACH PMR Systemy profesjonalnej łączności radiowej PMR mogą wykorzystywać sieci IP i osiągać z tego tytułu znaczne korzyści. W pracy przedstawiono koncepcję technologii znanej jako Radio over IP oraz kilka przykładowych, dostępnych na rynku rozwiązań. Słowa kluczowe: systemy PMR, Radio over IP. WSTĘP Systemy radiokomunikacji ruchomej prawdopodobnie będą w przyszłości wykorzystywały sieci IP jako sieci szkieletowe. Uważa się, że takie rozwiązanie przyczyni się do zwiększenia elastyczności i skalowalności sieci, a także ułatwi wprowadzanie zarówno nowych rozwiązań technicznych w interfejsach radiowych systemów, jak i nowych rodzajów usług. Systemy profesjonalnej łączności radiowej PMR (Professional Mobile Radio), przeznaczone dla służb bezpieczeń- stwa publicznego oraz firm, chociaż mają znacznie mniejszy zasięg terytorialny, to również mogą wykorzystywać sieci IP i osiągać z tego tytułu znaczne korzyści. Technikę taką określa się czasami jako Radio over IP. Za punkt wyjścia dalszych rozważań posłuży klasyczna już architektura sieci systemu GSM, w jej pierwotnej formie (rys. 1). Jest to sieć hierarchiczna, której nadrzędnym elementem jest centrala radiokomunikacyjna MSC (Mobile Switching Centre), dysponująca m.in. bazami danych użytkowników własnych HLR (Home Location Register) i wizytujących VLR (Visitors Location Register) oraz centrum uwierzytelniania AUC (Authentication Centre). Centrala MSC zarządza systemami stacji bazowych, w których skład wchodzą sterowniki stacji bazowych BSC (Base Station Controller), które z kolei zarządzają stacjami bazowymi BTS (Base Transceiver Station) [12]. Warstwa fizyczna sieci szkieletowej systemu GSM jest realizowana na podstawie transmisji synchronicznej PDH/SDH, przy czym w łączach pomiędzy BSC a BTS zazwyczaj wykorzystywano standard E1 i protokół sygnalizacji SS7 [11]. Początkowo ta sama sieć szkieletowa służyła również do realizacji usług transmisji danych CSD (Circuit Switched Data) oraz HSCSD (High Speed Circuit Switched Data). -
A Survey on Legacy and Emerging Technologies for Public Safety Communications
1 A Survey on Legacy and Emerging Technologies for Public Safety Communications Abhaykumar Kumbhar1;2, Farshad Koohifar1, Ismail˙ Guvenc¸¨ 1, and Bruce Mueller2 1Department of Electrical and Computer Engineering, Florida International University, Miami, FL 33174 2Motorola Solutions, Inc., Plantation, FL 33322 USA Email: fakumb004, fkooh001, [email protected], [email protected] Abstract—Effective emergency and natural disaster manage- policy have been discussed in [4] and [5], which study the ment depend on the efficient mission-critical voice and data decoupling of spectrum licenses for spectrum access, a new communication between first responders and victims. Land nationwide system built on open standards with consistent Mobile Radio System (LMRS) is a legacy narrowband technology used for critical voice communications with limited use for data architecture, and fund raising approach for the transition to a applications. Recently Long Term Evolution (LTE) emerged as new nationwide system. As explained in [6], communication of a broadband communication technology that has a potential time critical information is an important factor for emergency to transform the capabilities of public safety technologies by response. In [7] and [8], insights on cognitive radio technology providing broadband, ubiquitous, and mission-critical voice and are presented, which plays a significant role in making the best data support. For example, in the United States, FirstNet is building a nationwide coast-to-coast public safety network based use of scarce spectrum in public safety scenarios. Integration of LTE broadband technology. This paper presents a comparative of other wireless technologies into PSC is studied in [9], with survey of legacy and the LTE-based public safety networks, and a goal to provide faster and reliable communication capability discusses the LMRS-LTE convergence as well as mission-critical in a challenging environment where infrastructure is impacted push-to-talk over LTE. -
Private Mobile Radios
Private Mobile Radios European Edition 6.25 kHz FDMA True RF Efficiency Company Profi le lcom lnc. is a wireless communications equipment manufacturer located in Osaka, Japan. Since lcom’s establishment in 1954, the company have had a long record as a trusted manufacturer of land mobile ra- dios, amateur radios, marine radios, navigation products, aviation radios and communication receivers. Icom quality and reliability Made in Japan Over 50 years of engineering and production excellence is a part of Icom is a rare example of a Japanese equipment manufac- every Icom product. Using the latest manufacturing technology, Icom ra- turer that has not shifted production abroad, but has kept its dios are tested to pass rigorous in-house tests as well as environmental production base in Japan. The Wakayama lcom plants have tests to the US Military standard 810 specifications. Icom’s products also advanced production systems to produce small or large vol- comply with the European RoHS directive and intrinsic safety standards. ume/multi-model wireless communication products. Dust Protection Air Leak Test Icom, a global brand name Icom’s worldwide network lcom is recognised as a leading 2-way radio global brand lcom products are sold across the globe. lcom has an inter- name around the world. Our land mobile radios are used by national sales and service network, including sales subsidi- many professional organizations all over the world, including aries in the U.S., Canada, Australia, Germany and Spain. lcom public safety, security and humanitarian -
Task 3 Tompkins County
q NYS TEC New York State Technology Enterprise Corporation presents its Options for a Public Safety Wireless Communications System: Synthesis and Evaluation Report for the Tompkins County Radio System Project February 28, 2001 Version 2 Options for a Public Safety Wireless Radio Communication System: NYS TEC Synthesis and Evaluation Report Tompkins County Radio System Project Table of Contents 1. OVERVIEW ..................................................................................................................................................1 2. WIDE-AREA WIRELESS MOBILE TECHNOLOGY ............................................................................3 2.1 RADIO FREQUENCIES .......................................................................................................................................3 2.2 CONVENTIONAL RADIO SYSTEMS ..................................................................................................................10 2.3 DIGITAL VOICE, DATA AND ENCRYPTION......................................................................................................13 2.4 VOTING SYSTEMS ..........................................................................................................................................17 2.5 TRUNKED RADIO SYSTEMS ............................................................................................................................17 2.6 SIMULCAST ....................................................................................................................................................24