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Octave pulse data method & apparatus

a pulse data and octave technology, applied in the field of octave pulse data method & apparatus, can solve the problems of low level of reliability, high cost, global loss of asd data, etc., and achieve the effects of wide range of operations, high cost, and low cos

Inactive Publication Date: 2005-07-07
SYMSTREAM TECH HLDG NO 2 PTY LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0031] Accordingly, it is the primary object of the invention to provide a completely novel Octave Pulse-Virtual Transaction Data Network (OP-VTDN) provides a new paradigm for wireless electronic commerce via the Internet world-wide-web (WWW). OPD is a Unified Messaging (UM) platform paradigm which encompasses many data and network protocol layers that is completely compatible with Wireless Application Protocol (WAP) and Wireless Application Environment (WAE). The top layers of OPD-VTDN protocols is the Octave Pulse Data (OPD) data language, based upon the physical and theoretical basis of music pitch, timbre and loudness expressed in the language of music notation and conversion measures are defined as sampled octave 5 ms pulse constructs. Each sampled pulse carries a structured digital data bit arrangement that signifies octave notations A, B, C, D, E, F, and G also known as the fundamental seven octaves, with all the iterations and variations of each octave measure expression. Octaves are features of musical perception by which all pitches with frequencies are related by powers of 2. Moreover, each octave embodies the seven octave pitch names in will defined harmonic iterations. This 7×7 expression allows for a wide range of octave pulse signature iterations and variations, in accord with the invention's octave pulse, complex wave signature design.

Problems solved by technology

ASD data suffers globally because it is subject to much inherent complexity, low level of reliability and high cost.
Paging and SMS is an unreliable, slow and costly medium for application specific data such as telemetry, as abbreviated Internet web clipping services, news services, stock reporting, and is not designed for time critical delivery to the user.
SMS is subject to fraud, and consumes much host network bandwidth in relation to its per unit revenue model.
One SMS telemetry modem built by the Siemans company for example may not operate properly in a network built by Alcatel, Lucent or Erricson.
We know that we cannot expect the world and its wireless communication systems to be exact and to be always predictable in terms of performance and predictable.
This fact alone limits sending conventional modernized data over GSM-TDMA, TDMA and CDMA air interface digital speech and pulse code modulated (PCM) channels without using a specialized modem on each end of the communications event.
However TCM has to be designed into the modulation scheme at inception, therefore intended advantages are again regulated to the world of convoluted thinking that solves technical problems by building and selling new boxes, thus wasting human and material resources.
In fact, GSM 900 / 1800 / 1900 cannot support data through “voice channels.
GSM has provided many different connection based and connectionless data pathways, all are not good choices for web-based information gathering information and application specific telemetry data because of over complexity that results in prohibitive expense and low performance.
Said SMS message stacks are located at specialized short message mobile switching centers (SMSC) that dramatically impede message flow, thus causing message delivery delays.
These conventional network elements are inefficient, slow and were not originally designed for supporting time critical telemetry and Internet based web clipping data services.
Short Message Switching Center's (SMSC) operating in GSM and other similar cellular network modalities are inherently slow and are inefficient bottlenecks.
Until now SMS has never been truly acceptable for time critical application specific telemetry data and web clipping services.
Such services as security system monitoring, stock purchasing and transaction acknowledgement, fire control system monitoring are inherently time critical.
Many recent failures of note have been the deployment of enormouslessly expensive wireless infrastructures, such as the abysmal Iridium Satellite network.
These significant blunders reflect a collective industry arrogance that has caused many in the Wireless Industry to rethink their network design and deployment strategies.
This fact keeps costs down, and shortens ramp up time in terms of network reconfigurations and deployment of OP-VTDN virtual topologies, and application specific-data-modality operations.
Throughout the world there are many GSM-SM standards that are incompatible with one another.
The reasons for SMS protocol incompatibility are essentially illogical.
This fact along has seriously plagued the Wireless Application Specific Data Industry.

Method used

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  • Octave pulse data method & apparatus
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  • Octave pulse data method & apparatus

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Embodiment Construction

[0102] Reference will not be made in detail to the present preferred embodiments of the invention illustrated in the accompanying drawings. In describing the preferred embodiments and applications of the invention, specific terminology is employed for the sake of clarity. However, the invention is not intended to be limited to the specific terminology so selected, and it is understood that each specific element includes all technical equivalents that operate in a similar manner in similar wireless and wireline communication systems to accomplish a similar purpose.

[0103] Accordingly, there is provided means and methods that create novel Octave Data Protocols (OPD), that operate seamlessly within the network elements of GSM, IS-136, IS-95, GPRS, Wideband CDMA, GSM-CDMA, GSM-iDEN-Nextell, UMTS, IMT-2000, CDMA-2000, Globalstar and other related network elements. The invention also provides modified short message service (MSMS) based teleservice and bearer service data packet constructs...

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Abstract

A method for communicating octave pulse signature messages between a wireless virtual transaction terminal and a virtual host system over a wireless telecommunications network that includes a digital traffic channel that transports speech frames and subframes over selected air interface channels, a pulse code modulated circuits that conveys speech frames and subframes through public land mobile networks and publicly switched telecommunications networks. The method comprises compling a communicative message derived from stored conventional alpha numeric characters using conventional human machine interface apparatus, the apparatus may be comprised of personal digital assistant tablet tap screen; generating an octave pulse message at the wireless virtual transaction terminal, the message comprising a plurality of octave pulse resonant signature encoding constructs; and encoding each octave pulse resonant signature with complex harmonic waveforms associated with musical constructs interpreted as musical notation. The method comprises manipulating speech frames and subframes over air interface traffic channels and using pulse code modulated circuits to convey maniupulated speech frames and subframes. Then, a communicative message derived from stored alpha numeric characters is compiled for wireless voice and data communication.

Description

BACKGROUND OF THE INVENTION [0001] 1. Field of the Invention [0002] The present invention relates to providing unique Octave Pulse Data Messaging protocols that provide ubiquitous intra-system and intersystem connectivity, and other efficient message handling protocol topologies that enable virtual circuit fast packet switched (VCFP) transaction based protocol that enables wireless telemetry, Internet web clipping, WAP, WAE, WTA, WTP, WDP, and secure transaction based messaging such as stock sale, and point-of-sales (POS) transactions for; GSM 900 / 1800PCN, GSM 900 / 1900PCS, GPRS, UMTS, IMT-2000, IS-95CDMA a, b, c, IS-136TDMA a, b, c, Mobile Satellite systems such as Teledesic, Moetius, ICO and Skybridge, a plurality of terrestrial PLMN. PSTN system combinations and the like. [0003] 2. Description of Related Art [0004] The birth of digital packet data communications technology in the late 60's and 70's occurred when the first successful transmission of digital information was transpor...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): G01D4/00H04L1/00H04L12/28H04L12/56H04L29/08H04W28/06H04W72/12
CPCG01D4/004H04L1/004H04L1/0071H04W4/12H04W4/18Y04S20/42Y02B90/242Y04S20/322H04L67/04Y02B90/246H04W28/06Y02B90/20Y04S20/30
Inventor LADUE, CHRISTOPH KARL
Owner SYMSTREAM TECH HLDG NO 2 PTY LTD
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