Utility Pole Mounted Antenna Wireless Transmission
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Solution Overview
Problem
Conventional methods for providing wireless communications are cost-prohibitive and often hindered by regulatory and land availability issues, necessitating the development of more efficient and cost-effective solutions for wireless network deployment.
Innovation Solution
Utilizing utility pole-mounted antennas and transceivers connected to existing wire line networks, which leverage electrical power and rights-of-way to transmit wireless data, thereby avoiding the need for large transceiver towers and associated costs and regulatory hurdles.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If large transceiver towers are constructed to provide wireless communications, then wireless transmission capability is improved, but construction cost and regulatory complexity increase
Solution Approach 1:
The patent uses utility poles as intermediary structures to mount transceivers and antennas. Instead of constructing large towers directly, the system leverages existing utility pole infrastructure as a mediator to support wireless transmission equipment, thereby reducing construction complexity while maintaining transmission capability
Solution Approach 2:
The utility poles serve multiple functions: they support the transceiver and antenna for wireless transmission, provide electrical power to the transceiver, and utilize existing right-of-way permissions. This multi-functionality reduces the need for separate infrastructure components and simplifies deployment
2Reliability
If large transceiver towers are constructed to provide wireless communications, then wireless transmission capability is improved, but construction cost increases
Solution Approach 1:
The system leverages existing utility pole infrastructure that is already in place and owned by utility companies. The utility poles themselves provide self-service by offering mounting structures, electrical power, and right-of-way access, eliminating the need for expensive tower construction and land acquisition
Solution Approach 2:
Existing utility pole infrastructure acts as an intermediary that already possesses the necessary support structures, power supply, and legal permissions. By utilizing this pre-existing intermediary infrastructure, the system avoids the high costs of constructing new towers and acquiring land
3Reliability
If traditional tower construction is used for wireless communications, then transmission coverage is improved, but land availability requirements increase
Solution Approach 1:
Utility poles provide multiple functions in a compact form: structural support for antennas, electrical power supply, and existing right-of-way permissions. This eliminates the need for separate land acquisition while maintaining transmission coverage capability
Solution Approach 2:
The utility pole infrastructure serves as an intermediary that already has established legal rights and physical presence in the required locations. By mounting equipment on these existing structures, the system achieves transmission coverage without needing to acquire additional land
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This approach enables cost-effective and efficient wireless communication by utilizing existing infrastructure, reducing the need for land acquisition and regulatory approvals, and allowing for widespread deployment of wireless services without the expense of traditional tower construction.
Implementation Method 1
transmitting the first data wirelessly from the transceiver through an antenna
Data Source
AI summary
Systems and methods are disclosed for providing wireless communications through, for example, a utility pole mounted antenna. The disclosed systems and methods may include receiving first data from a wire line network at a transceiver placed at a location on the wire line network. The location may be a place where the wire line network is present, where electrical power for the transceiver is present, or where a service provider of the wireless communications has a legal right to locate the transceiver. Furthermore, the disclosed systems and methods may include transmitting the first data wirelessly from the transceiver through an antenna wherein the transceiver and the antenna are located on a utility pole. Moreover, the disclosed systems and methods may include receiving second data at the transceiver wirelessly from a wireless device.


