Nippon telegraph and telephone corporation (20240118152). ARITHMETIC LOGIC UNIT, EQUIPMENT MANAGEMENT METHOD, AND PROGRAM simplified abstract

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ARITHMETIC LOGIC UNIT, EQUIPMENT MANAGEMENT METHOD, AND PROGRAM

Organization Name

nippon telegraph and telephone corporation

Inventor(s)

Gen Kobayashi of Musashino-shi, Tokyo (JP)

Kazuya Ando of Musashino-shi, Tokyo (JP)

Masaki Waki of Musashino-shi, Tokyo (JP)

Ryoichi Kaneko of Musashino-shi, Tokyo (JP)

Hiroaki Tanioka of Musashino-shi, Tokyo (JP)

ARITHMETIC LOGIC UNIT, EQUIPMENT MANAGEMENT METHOD, AND PROGRAM - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240118152 titled 'ARITHMETIC LOGIC UNIT, EQUIPMENT MANAGEMENT METHOD, AND PROGRAM

Simplified Explanation

The present invention provides an arithmetic apparatus, a facility management method, and a program that can quickly determine the current tension applied to outdoor structures. The arithmetic apparatus calculates the dip degree of a cable and the distance between poles from 3D model data, then determines the tension of each cable between the poles based on the dip degree, distance between poles, and weight of the cable per unit length. It also calculates a combined load by converting the tension and load of accessories on the poles into an arbitrary position on the poles.

  • Calculates dip degree and distance between poles from 3D model data
  • Determines tension of each cable between poles based on dip degree, distance, and cable weight
  • Calculates combined load by converting tension and load of accessories on poles

Potential Applications

This technology can be used in the construction and maintenance of outdoor structures such as bridges, power lines, and communication towers.

Problems Solved

This technology solves the problem of accurately determining the tension applied to cables in outdoor structures, which is crucial for ensuring structural integrity and safety.

Benefits

The benefits of this technology include improved accuracy in tension calculations, faster determination of bearing capacity, and enhanced safety in the management of outdoor structures.

Potential Commercial Applications

Potential commercial applications of this technology include engineering firms, construction companies, and facility management companies involved in the design, construction, and maintenance of outdoor structures.

Possible Prior Art

One possible prior art for this technology could be traditional methods of calculating tension in cables, which may be time-consuming and less accurate compared to the innovative approach presented in this patent application.

Unanswered Questions

How does this technology compare to existing methods of calculating tension in cables for outdoor structures?

This article does not provide a direct comparison with existing methods, leaving the reader to wonder about the specific advantages and limitations of this new approach.

What are the potential limitations or challenges in implementing this technology in real-world scenarios?

The article does not address any potential obstacles or challenges that may arise when implementing this technology, leaving room for speculation on its practicality and feasibility.


Original Abstract Submitted

the present invention has an object of providing an arithmetic apparatus, a facility management method, and a program that make it possible to acquire current tension applied to outdoor structures in a short period of time and make a bearing determination. the arithmetic apparatus according to the present invention calculates the dip degree of a cable and a distance between poles from the 3d model data of the cable according to math. c1 and calculates the tension of each cable between the poles from the dip degree, the distance between the poles, and the weight of the cable per unit length according to math. c2 (when no wind blows) or math. c4 (when wind blows). further, the arithmetic apparatus according to the present invention calculates a combined load obtained by converting the tension and the load of the accessory of the poles into an arbitrary position on the poles according to math. c3.