Information processing device and method for planetary orbital data.
Patent Information
- Application Number
- JP2026109315
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-06-05
- Publication Date
- 2026-09-01
AI Technical Summary
【0011】 本発明の第1の課題解決手段による惑星の公転を基にした生体予測方法では、アスペクトとして360度を16等分する22.5度の奇数倍の角度を追加したことにより、バイオリズムの身体リズムにも類似した、きめ細かく精度の高い生体予測方法の提供が可能になる。また、バイオリズムの身体リズムPばかりでなく感情リズムSや知性リズムIとも予測する周期と項目と結果がほぼ一致することを開示し、その類似性から99.7%以上の確率で科学的に有意性があると考えられる信頼性の高い生体予測方法を提供することが可能になる。さらに、第2の課題解決手段により、惑星の公転を基にした高精度かつ高有意性で演算の簡単な生体予測方法を提供することが可能になる。
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Figure 2026139871000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a living body prediction method for predicting whether the condition or fortune of a living body is good or bad based on the revolution of planets. [Background Art]
[0002] Western astrology has been known since ancient times as a method for predicting good or bad fortune of a living body based on the revolution of planets. Conventional Western astrology includes Sun-centered Western astrology and Earth-centered Western astrology, and the latter is frequently used in predicting the fortune of a living body. A prediction method of conventional Western astrology will be described with reference to FIG. 1. In a planet position acquisition step 11, positions of planets on the ecliptic at the time of birth and at the time of prediction are acquired. In an angle acquisition step 12, an angle formed by the planet positions obtained in the planet position acquisition step 11 on the ecliptic is acquired. In an evaluation step 13, if the angle obtained in the angle acquisition step 12 is a specific meaningful angle called an aspect, evaluation is performed according to the angle to predict whether the fortune is good or bad. The specific angles called aspects include harmonious angles and inharmonious angles. Specifically, as described below the step name of the evaluation step 13 in FIG. 1, 120 degrees and 60 degrees are used as angles indicating strong harmony, 30 degrees as an angle indicating moderate harmony, and 36 degrees, 72 degrees and 144 degrees as angles indicating weak harmony. Further, 90 degrees and 180 degrees are used as angles indicating strong disharmony, and 45 degrees, 135 degrees and 150 degrees are used as angles indicating moderate disharmony. In addition, in the evaluation step 13, prediction items are defined for each planet that forms the angle obtained in the angle acquisition step 12. For example, in the relationship between the Sun and the Earth, it is said that vitality and health are divined, knowledge and theory are divined with Mercury, and love, beauty and wealth are divined with Venus. [Prior Art Document] [Patent Document]
[0003] [Patent Document 1] Utility Model Registration No. 3202731 [Summary of the Invention] [Problems that the invention aims to solve]
[0004] As described above, traditional Western astrology does not necessarily provide sufficiently detailed and accurate predictions, and it has the problem of being positioned as a mystical form of divination with unclear scientific significance.
[0005] This invention aims to solve the problems that conventional Western astrology has had. In other words, the bioprediction method according to the present invention provides a more detailed and accurate prediction method than conventional Western astrology by adding a natural extension to it. Furthermore, the bioprediction method according to the present invention discloses that the predicted cycles, items, and results are in almost complete agreement with the biorhythms based on three cycles: the 23-day physical rhythm P (Physical), the 28-day emotional rhythm S (Sensitivity), and the 33-day intellectual rhythm I (Intellectual), which have been elucidated by many scholars completely independently of Western astrology, and thereby provides a scientifically significant prediction method that is supported by this. [Means for solving the problem]
[0006] To achieve the above objectives, the present invention provides a first method for predicting biological conditions based on planetary orbits, comprising: a planetary position acquisition step for acquiring the positions of planets on the approximate ecliptic at the time of birth and the time of prediction; an angle acquisition step for acquiring the angles formed by the planetary positions obtained in the first planetary position acquisition step; and an evaluation step for predicting the condition or fortune of the biological person by evaluating the angles obtained in the first angle acquisition step. In the first evaluation step, in addition to the aspects used in conventional Western astrology, angles within the range of plus or minus 1 degree of odd multiples of 22.5 degrees are also predicted as disharmonious aspects.
[0007] Furthermore, the second problem-solving means is a biological prediction method based on the orbit of a planet, comprising a first elapsed time acquisition step of acquiring the first elapsed time from the time of birth to the time of prediction, a second elapsed time acquisition step of acquiring the second elapsed time immediately preceding the prediction time from the first elapsed time in the previous period and the orbital period of the planets in the solar system, and an evaluation step of predicting the condition or fortune of the organism by evaluating the second elapsed time in the previous period. Here, in the evaluation step in the previous period, similar to the first problem-solving means in the previous period, if the second elapsed time in the previous period is within the range of a natural number multiple of 1 / 16th of a period plus or minus 1 / 360th of a period, it is predicted to be discordant, and if the second elapsed time in the previous period is within the range of a 1 / 3rd of a period plus or minus 6 / 360ths of a period, it is predicted to be harmonious.
[0008] The effects of the first problem-solving method described above are as follows: In the bioprediction method based on planetary revolutions according to the present invention, the positions of the planets on the approximate ecliptic at the time of birth and the predicted time are obtained in the planetary position acquisition process, the angles made by the planets on the approximate ecliptic obtained in the previous planetary position acquisition process are obtained in the angle acquisition process, and the angles obtained in the previous angle acquisition process are evaluated in the evaluation process to predict the condition or fortune of the organism. Here, the aspects used in the evaluation process are a natural extension of the aspects used in conventional Western astrology, with the addition of angles that are natural multiples of 22.5 degrees, which is 1 / 16th of 360 degrees. As a result, it becomes possible to make more detailed and accurate predictions than conventional Western astrology.
[0009] Furthermore, the second problem-solving method simplifies calculations by considering the planet's orbit from a temporal perspective rather than a spatial one. Specifically, it focuses on the fact that the orbits of the main planets in the solar system are close to circular, resulting in a nearly constant angular velocity. Instead of using the angle between the planet on the ecliptic at the time of birth and the predicted time in the first problem-solving method, the second problem-solving method uses the most recent elapsed time to the predicted time to make predictions about the organism.
[0010] Therefore, the operation of the second problem-solving means described above involves obtaining the first elapsed time from the time of birth to the predicted time in the first elapsed time acquisition process, obtaining the second elapsed time immediately preceding the predicted time from the previous first elapsed time and the orbital period of the planets in the solar system in the second elapsed time acquisition process, and evaluating the previous second elapsed time in the evaluation process to predict the condition or fortune of the living organism. Here, the meaningful time used in the evaluation process is the same as the aspect used in the evaluation process of the first problem-solving means, using natural number multiples of 1 / 16th of the period of the planet's orbit, or 1 / 3 of the period, etc. As a result, detailed predictions can be made with simple calculations. [Effects of the Invention]
[0011] In the first problem-solving means of the present invention, a bioprediction method based on planetary orbits is provided. By adding an odd-numbered multiple of 22.5 degrees, which divides 360 degrees into 16 equal parts, as an aspect, it becomes possible to provide a detailed and highly accurate bioprediction method that is similar to the physical rhythm of biorhythms. Furthermore, it is disclosed that the predicted period, items, and results almost coincide not only with the physical rhythm P of biorhythms but also with the emotional rhythm S and intellectual rhythm I. Based on this similarity, it becomes possible to provide a highly reliable bioprediction method that is considered scientifically significant with a probability of 99.7% or higher. Moreover, the second problem-solving means makes it possible to provide a highly accurate, highly significant, and easy-to-calculate bioprediction method based on planetary orbits. [Brief explanation of the drawing]
[0012] [Figure 1] This is a diagram illustrating an example of traditional Western astrology. [Figure 2] This is a process diagram showing an example of a biological prediction method according to the present invention. [Figure 3] This table shows the circumstances under which the present invention was discovered. [Figure 4] This is a process diagram showing an example of another biological prediction method according to the present invention. [Figure 5] This table shows the error in prediction timing for other biological prediction methods according to the present invention. [Modes for carrying out the invention]
[0013] This invention adds a natural extension to the aspects of conventional Western astrology, but it is a reliable biological prediction method whose scientific significance has been verified because it produces prediction results similar to biorhythms, which have been independently elucidated from Western astrology. Furthermore, the claims of this invention and the terms "aspect" as used herein refer to specific angles that planets make on the approximate ecliptic, which have harmonious or discordant significance, similar to conventional Western astrology. [Examples]
[0014] (Biological prediction method) A preferred embodiment of the biological prediction method according to the present invention will be described with reference to Figure 2. The biological prediction method according to the present invention is a biological prediction method based on the orbit of planets, and comprises a planetary position acquisition process 21 in which the positions of the planets on the approximate ecliptic at the time of birth and the time of prediction are acquired, an angle acquisition process 22 in which the angles formed by the positions of the planets obtained in the planetary position acquisition process 21 are acquired, and an evaluation process 23 in which the condition or fortune of the biological being is predicted by evaluating the angles obtained in the angle acquisition process 22. In the evaluation process 23, in addition to the aspects used in conventional Western astrology, angles in the range of plus or minus 1 degree of odd multiples of 22.5 degrees are also predicted as disharmonious aspects.
[0015] Further, in the biological prediction method based on the revolution of planets according to the present invention, in the planet position acquiring step 21, the positions of the planets on substantially the ecliptic at the birth time point and the prediction time point are acquired; in the angle acquiring step 22, the angles formed by the planets on substantially the ecliptic obtained in the previous planet position acquiring step 21 are acquired; and in the evaluation step 23, the biological condition or fortune is predicted by evaluating the angles obtained in the previous angle acquiring step 22. Here, the aspects used in the evaluation step 23 are obtained by adding a natural extension to the aspects used in conventional Western astrology, and adding angles that are odd multiples of 22.5 degrees, which is one sixteenth of 360 degrees. As a result, finer and more accurate prediction can be performed than with conventional Western astrology.
[0016] Hereinafter, each step will be described in detail. (Planet Position Acquiring Step 21) In the planet position acquiring step 21, similarly to conventional Western astrology, the positions of not only the Earth but also solar system planets such as Mercury and Venus on substantially the ecliptic at the birth time point given by the date and time of birth of the organism to be normally predicted and the prediction time point are acquired. The position of a planet may be calculated using physical laws such as equations of motion and constants relating to the orbit of the planet, or may be obtained by referring to a pre-calculated table. In this case, the position of the planet at the closest time in the table may be used, or the position may be obtained by performing interpolation processing based on the positions of the planet at close times. Here, the term "substantially" the ecliptic is used because the ecliptic is based on the vernal equinox point based on the Earth's rotation axis, so the ecliptic is fine for the position of a planet centered on the Earth, but for the position of a planet centered on the Sun, it may be better to use stars as the reference for the position of each planet. It is not clear which is more accurate, but the difference is about one day in 70 years, and practically there is no major problem whichever is used. Also, although degrees are used as the unit of the angle indicating the position of a planet, it goes without saying that other units such as radians may also be used.
[0017] (Angle Acquiring Step 22) In the angle acquisition step 22, similarly to conventional Western astrology, the angle formed on the ecliptic by the positions of the plurality of planets acquired in the planet position acquisition step 21 is obtained by, for example, subtraction. If the subtraction result is negative, 360 degrees is added or the result is taken as an absolute value. Further, if the subtraction result exceeds 180 degrees, the result is subtracted from 360 degrees to be 180 degrees or less. These processes are not necessarily required, but are useful for reducing the processing load of the evaluation step 23.
[0018] (Evaluation Step 23) In the evaluation step 23, it is determined whether or not the angle obtained in the angle acquisition step 22 corresponds to an aspect. If the angle corresponds to an aspect, a prediction item is determined from the planets that formed the angle obtained in the angle acquisition step 22, and the quality including the degree of the prediction result is determined from the corresponding aspect. Then, the condition of a living body and fortune are predicted based on the determined prediction item and the quality including the degree of the prediction result.
[0019] (Aspects Used in Evaluation Step 23) For the aspects used in the evaluation step 23, information on whether the influence is harmonic or discordant, the strength of the influence, and the allowable range is defined for each aspect. Specifically, as described below the step name of the evaluation step 23 in FIG. 2, 120 degrees and 60 degrees are defined as angles indicating strong harmony that have been used in conventional Western astrology, 30 degrees as an angle indicating moderate harmony, 36 degrees, 72 degrees, and 144 degrees as angles indicating weak harmony, 90 degrees and 180 degrees as angles indicating strong disharmony, and 45 degrees, 135 degrees, and 150 degrees as angles indicating moderate disharmony. In the present invention, natural extensions are added to these, and 22.5 degrees, 67.5 degrees, 112.5 degrees, and 157.5 degrees are added as angles indicating weak disharmony.
[0020] The four added angles, 22.5 degrees, 67.5 degrees, 112.5 degrees, and 157.5 degrees, are 1, 3, 5, and 7 times the angle obtained by dividing 360 degrees into 16 equal parts (22.5 degrees). This addition was made by noticing that the previously considered discordant angles of 90, 180, 45, and 135 degrees were odd multiples of angles obtained by dividing 360 degrees into powers of 2 (2, 4, and 8). Maintaining this rule, the angles obtained by dividing 360 degrees into 16 equal parts and their odd multiples were added as an extension, resulting in a natural and harmonious expansion. While degrees were used as the unit of angle, it goes without saying that other units such as radians could also be used.
[0021] In traditional Western astrology, angles such as 45 degrees (dividing 360 degrees into 8 equal parts) and 135 degrees (three times that amount) are often not used. The angles added in this embodiment 1, which divide 360 degrees into 16 equal parts, and angles that are odd multiples of those angles, were considered meaningless and were never used. Taking this into consideration, the strength of the influence of the added angles was set to be weak disharmony.
[0022] The addition of these angles was made as a result of the inventor's diligent research, which revealed through scientific probability calculations that the biorhythmic body rhythm P corresponds to 1 / 16th of the Earth's revolution. Thus, the angles that divide 360 degrees into 16 equal parts were found to have meaning as angles made by the Earth's revolution, and they have similar meaning not only for the angles made by planets on the ecliptic centered on the Sun, but also for the angles made by the Sun and other planets on the ecliptic centered on the Earth.
[0023] Regarding the acceptable range of aspects, we adopted a range similar to that of traditional Western astrology: plus or minus 6 degrees for angles between strong harmony and strong disharmony, plus or minus 2 degrees for angles between moderate harmony and moderate disharmony, and plus or minus 1 degree for angles between weak harmony and weak disharmony.
[0024] While aspect information is kept in a table format, any format is acceptable as long as it provides information about angles necessary to evaluate the meaning of the angles that planets make on the ecliptic in evaluation step 23, including a function format. Furthermore, the degree of influence may be adjusted based on the difference from a meaningful angle, even if it is within an acceptable range.
[0025] (Prediction items in evaluation process 23) The prediction items in evaluation step 23 are determined by the planets that form an angle in evaluation step 23. The prediction items indicated by each planet are the same as in traditional Western astrology: Earth (or the Sun in geocentric astrology) represents vitality and health; Mercury represents knowledge, theory, and information; Venus represents abundance such as love, beauty, and art; Mars represents motivation; Jupiter represents development and expansion; and Saturn represents stability and responsibility. If different planets form an angle, the evaluation items will be a combination of the evaluation items of each planet. For example, in the case of Earth and Mars, motivation based on health will be the prediction item.
[0026] (Example of prediction in Example 1) As an example of prediction in Example 1, we predict the condition of a person born at noon on January 1, 1990, Japan time, at noon on July 25, 2025, based on the Earth's revolution. In planetary position acquisition process 21, we obtain that at noon on January 1, 1990, the sun as seen from Earth was at 280.4 degrees from the vernal equinox on the ecliptic (10.4 degrees in Capricorn), and at noon on July 25, 2025, the sun as seen from Earth was at 122.5 degrees from the vernal equinox (2.5 degrees in Leo). In angle acquisition process 22, we obtain an angle of 157.9 degrees by subtracting 122.5 degrees from the 280.4 degrees obtained in planetary position acquisition process 21. In evaluation step 23, it is predicted that "vitality and health will be slightly lower than normal," given that the 157.9 degrees obtained in angle acquisition step 22 is within the range of 157.5 degrees plus or minus 1 degree, which indicates a slight disharmony, and that the Earth's prediction items relate to vitality and health.
[0027] (Methods for verifying the significance of effects and predictions) The means and operation of the bioprediction method according to this embodiment 1 have been described in detail above. Now, we will explain its effects and the significance of its predictions, although the procedure is somewhat complex. First, we will explain the similarity between this embodiment 1, which simply adds disharmonious angles to Western astrology in a natural way, and the predictions of biorhythms, which have been independently elucidated by many scholars. Next, we will probabilistically verify whether this similarity is purely coincidental and the prediction results are meaningless, or whether it is inevitable because the prediction is significant. If it is the latter, we will explain the effects and significance of this embodiment 1's predictions by determining the cause of the differences and which prediction is more accurate.
[0028] (Similarities to predictions based on biorhythms) The similarity between this embodiment 1, which simply adds naturally discordant angles to Western astrology, and the predictions of biorhythms, which have been independently elucidated by many scholars, lies in the fact that all three cycles of biorhythms—the 23-day physical rhythm P, the 28-day emotional rhythm S, and the 33-day intellectual rhythm I—make similar predictions to this embodiment 1 in terms of predicted cycle, predicted items, and predicted results.
[0029] (Similarity to predictions with body rhythm P) Here, considering that the Earth's orbit is close to a circular orbit, and therefore the angle of Earth's movement along the ecliptic as seen from the Sun is roughly proportional to time, the time required for the Earth to travel 22.5 degrees along the ecliptic (1 / 16th of 360 degrees) is approximately 22.8285 days (1 / 16th of the Earth's stellar orbital period of 365.256 days). This number of days is extremely short, only 0.1715 days, compared to the 23-day period of the biorhythmic body rhythm P. This results in a discrepancy of about one day over approximately six cycles of the 23-day biorhythmic body rhythm P. Therefore, by adding angles obtained by dividing 360 degrees into 16 equal parts and their natural multiples as aspects, the bio-prediction method according to this embodiment 1 can obtain significant prediction results with a period almost identical to the biorhythmic body rhythm P for periods of a few months or less. However, 0 degrees (360 degrees) is an exception; it is neither harmonious nor discordant, but since it occurs only once every 16 times, it is not considered a problem here.
[0030] Furthermore, regarding the predicted items, in Western astrology, which is centered on Earth, the Earth's revolution around the sun is treated as the movement of the sun. In Western astrology, the sun's predecessor was the male god Apollo, and its predicted items are said to relate to vitality and health. This closely coincides with the physical rhythm P, which was initially identified by Dr. Wilhelm Fries as the male physical rhythm in biorhythms.
[0031] Furthermore, regarding the prediction results, biorhythms were initially discovered because health deterioration occurs periodically, and they basically predict days that require caution. On the other hand, in this embodiment 1, the angles obtained by dividing 360 degrees into powers of 2 and the angles that are natural multiples of those angles are angles that signify disharmony, just as in conventional Western astrology, and the prediction results are in almost agreement.
[0032] (Similarities in predictions between emotional rhythm S and intellectual rhythm I) The similarity between the predictions of biorhythms and this embodiment 1 is not limited to the physical rhythm P. The same is true for the remaining two biorhythms, the emotional rhythm S and the intellectual rhythm I. Regarding the predicted periods, the difference between the 28-day period of the emotional rhythm S of biorhythms and 2 / 16 (1 / 8) of Venus's orbital period of 224.7010 days, which is 28.0876 days, is extremely short, amounting to only about one day every 10 months. Similarly, the difference between the 33-day period of the intellectual rhythm I and 6 / 16 (3 / 8) of Mercury's orbital period of 87.9690 days, which is 32.9884 days, is extremely short, amounting to about one day every 8 years. Furthermore, regarding the predicted items, the emotional rhythm S of biorhythms, which was initially considered a feminine rhythm by Dr. Wilhelm Fries, almost perfectly matches Venus, whose predecessor was the goddess Venus and whose predicted items relate to abundance such as love, beauty, and art. Furthermore, the intellectual rhythm I of biorhythms closely coincides with Mercury, which predicts matters related to knowledge, theories, and information. The prediction results are also inconsistent, except for one instance in eight cycles where it returns to 0 degrees, as Venus, as seen from the sun, travels approximately one-eighth of 360 degrees along the ecliptic during the 28-day period of the emotional rhythm S, and the prediction results closely coincide. During the 33-day period of the intellectual rhythm I, Mercury, as seen from the sun, travels approximately three-eighths of 360 degrees along the ecliptic, which is about 135 degrees. Repeating this 135-degree movement results in 135 degrees, 270 (90) degrees, 45 degrees, 180 degrees, 315 (45) degrees, 90 degrees, 225 (135) degrees, and 0 degrees, returning to its original position, and thus the prediction results closely coincide, except for one instance in eight cycles where it returns to 0 degrees, and thus the prediction results closely coincide. Here, the numbers in parentheses () are the smaller of the supplementary angles of 360 degrees.
[0033] (Summary of similarities) As shown above, the similarity between the bio-prediction method of this embodiment 1, which is merely a minor modification to Western astrology by adding naturally disharmonious angles, and the predictions of biorhythms, which have been independently elucidated by many scholars, can be summarized as follows: For physical rhythm P and 1 / 16th of the Earth's orbit, the periods are close at 23 days and 22.8285 days, and the predicted items are also similar, such as physical condition, vitality, and health. For emotional rhythm S and 1 / 8th of the Venus's orbit, the periods are close at 28 days and 28.0876 days, and the predicted items are also similar, such as emotions and richness such as love, beauty, and art. For intellectual rhythm I and 3 / 8th of the Mercury's orbit, the periods are close at 33 days and 32.9884 days, and the predicted items are also similar, such as intellect, knowledge, theory, and information. In addition, common to all three rhythms, the predicted results are disharmonious and similar to the days of concern in biorhythms and the bio-prediction method of this embodiment 1.
[0034] (Verification of scientific probability) The above explains the similarity between this embodiment 1, which simply adds naturally discordant angles to Western astrology, and the predictions made with biorhythms, which have been independently elucidated by many scholars. We will now scientifically verify whether this similarity is due to unrelated chance and the prediction results are meaningless, or whether it is inevitable because it makes a significant prediction. Since the probability of necessity is complementary to the probability of chance, we will calculate the probability assuming, for convenience, that the similarity is due to chance in order to determine the probability of necessity.
[0035] (How the similarity of the periods was discovered) To calculate the probability that the similarity of periods is coincidental, it is helpful to understand how the similarity of periods was discovered. Figure 3 shows the orbital periods of the four planets closest to the sun—Mercury, Venus, Earth, and Mars—based on their stars, and the times obtained by multiplying the time obtained by dividing the orbital period into 16 equal parts by a natural number less than or equal to 7, in units of days. The reason for multiplying by a natural number is that the discordant timings in the bio-prediction method of this embodiment 1 repeat in the same period. In other words, all the times obtained by multiplying the time obtained by dividing the orbital period into 16 equal parts by a natural number less than or equal to 7 are discordant times. Therefore, if there is a time among them that is close to the period of a biorhythm, the angles made by the planets are likely to be discordant in the period that is a day to be careful of in biorhythms. The relationship between biorhythms and planetary orbits was actually discovered from such a table.
[0036] Looking at the days in Figure 3, if we search for the closest values to the biorhythm physical rhythm P (23 days), emotional rhythm S (28 days), and intellectual rhythm I (33 days), we can select one each from the Mercury, Venus, and Earth columns that are so close that there are no other suitable choices. The 23 days for physical rhythm P is 22.8285 days, which is 1 / 16th of the Earth's orbital period; the 28 days for emotional rhythm S is 28.0876 days, which is 2 / 16th (1 / 8th) of the Venus's orbital period; and the 33 days for intellectual rhythm I is 32.9884 days, which is 6 / 16th (3 / 8th) of the Mercury's orbital period.
[0037] (The process of elucidating biorhythms) Furthermore, in order to calculate the probability that the similarity of the periods is coincidental, it is necessary to trace back the history of the elucidation of biorhythms and clarify the preconditions. Biorhythms were initially discovered by Dr. Wilhelm Fries, a physician, who found that men's physical rhythm P has a 23-day cycle and women's emotional rhythm S has a 28-day cycle. Later, Dr. Friedrich Telcher, based on the idea that there should be three rhythms like musical chords, proposed the existence of a 33-day cycle that is equally spaced with the 23-day and 28-day cycles, and it is said that he investigated the academic performance of many students and found that the intellectual rhythm I corresponds to this.
[0038] (Probability calculation of periodic similarity) Now, let's calculate the probability that the similarity in predictions is purely coincidental, given that the bio-prediction method based on planetary orbits in this embodiment 1 is completely unrelated to biorhythms, which have been elucidated by many scholars independently of this embodiment. It is natural for doctors to investigate the body and emotions during the process of elucidating biorhythms, and the similarity in the predicted items for physical rhythm P and emotional rhythm S cannot be said to be coincidental. However, the fact that the physical rhythm P is 23 days, which is the closest natural number to 22.8285 days (1 / 16th of the Earth's period), would be a coincidence if there is absolutely no relationship between biorhythms and the bio-prediction method in this embodiment 1. In the bio-prediction method of this embodiment 1, vitality and health become disharmony not only at 22.8285 days (1 / 16th of the Earth's period) as shown in Figure 3, but also at natural number multiples thereof. Therefore, the probability of it being the closest natural number by chance is 1 in 22.8285. Similarly, the probability that emotional rhythm S coincidentally falls on the 28th day, which is the closest natural number to a natural number multiple of 1 / 16th of Venus's period (14.0438 days), is 1 in 14.0438.
[0039] The reason a 33-day cycle was conceived is clear: it is equally spaced as 23 and 28 days, so it cannot be considered a coincidence. One might wonder why the longer 33 days were chosen instead of the shorter 18 days, but since the circumstances are not that clear, we will not consider this issue here in order to avoid exaggerating the probability of it being a coincidence. Dr. Friedrich Telcher discovered that this 33-day cycle was a rhythm in which intelligence was a predictive factor through a study of student performance, but it is unclear whether the study only examined student performance related to intelligence, or whether it was a study of multiple predictive factors and only intelligence showed a correlation, so we will not consider it a coincidence here in order to avoid exaggerating the probability of it being a coincidence. Thus, in reality, many more studies may have been conducted than those described here, and only those related to planetary orbits may have remained, but we have prioritized not exaggerating the probability of it being a coincidence.
[0040] In other words, the probability that there is absolutely no correlation between biorhythms and the biological prediction method of this embodiment 1, and that the similarity in predictions is purely coincidental, is less than 0.312%, which is the product of 1 / 22.8285 (the probability that the period of the physical rhythm P is the closest natural number to a natural number multiple of 1 / 16 of the Earth's period, which is 22.8285 days) and 1 / 14.0438 (the probability that the period of the emotional rhythm S is the closest natural number to a natural number multiple of 14.0438 (the probability that the period of Venus is the closest natural number to a natural number multiple of 1 / 16 of the Venus period, which is 1 / 14.0438). At the same time, the probability that there is a correlation between biorhythms and the biological prediction method of this embodiment 1, and that the similarity in predictions is not coincidental but inevitable because the predictions are significant, is obtained by subtracting 0.312% from 100%, resulting in a sufficiently high probability of at least 99.7%. This not only unravels the reason for the periodicity of biorhythms, which has been a mystery until now, but also provides scientific evidence that living organisms are influenced by the orbit of planets, and is therefore of great importance.
[0041] However, it is important to note that the probability of over 99.7% obtained here is not meaningless, but rather a scientifically significant probability, and is completely different from the accuracy of the prediction. Also, as an aside, the fact that the three number of days—22.8285 days (1 / 16 of the Earth's period), 14.0438 days (1 / 8 of Venus's period), and 32.9884 days (3 / 8 of Mercury's period)—are close to natural numbers is a coincidence related to planetary constants, and it may have been easier to elucidate biorhythms because they were close to natural numbers, but this is not directly related to the probability verification of the similarity between biorhythms and the biological prediction method in this embodiment 1.
[0042] (Consideration of similar periods) As shown above, biorhythms and the biological prediction method according to this embodiment 1 make scientifically significant predictions, but the predicted periods do not perfectly match. For example, the physical rhythm P of biorhythms is 23 days, while this corresponds to 22.8285 days, which is 1 / 16th of the Earth's orbital period; the emotional rhythm S is 28 days, while this corresponds to 28.0876 days, which is 2 / 16th (1 / 8th) of Venus's orbital period; and the intellectual rhythm I is 33 days, while this corresponds to 32.9884 days, which is 6 / 16th (3 / 8th) of Mercury's orbital period. Nevertheless, since the predicted period in the biological prediction method according to this embodiment 1 is based on the orbital periods of the planets, there is no room to doubt the number of days and correct it to a natural number. Furthermore, if there is a necessity for the similarity of predictions, it is natural to think that the root cause is the same. Therefore, we must conclude that there was a subtle error because we were limiting the biorhythm period to natural numbers.
[0043] Nevertheless, it is more consistent and convenient here to assume that the biorhythm cycles were slightly different. This is because, although biorhythms have been elucidated and their validity asserted by many scholars, many scholars have also published findings that they are meaningless, and they are currently classified as pseudoscience. If we consider, as concluded here, that the biorhythm cycles were not meaningless but were slightly different, then we can conclude that investigations of physical rhythm P and emotional rhythm S are meaningful if conducted within a few months, and of intellectual rhythm I within 10 years. However, if we base the investigation on the number of days since birth, we will obtain meaningless results, which is in a sense consistent with the current classification of biorhythms as pseudoscience.
[0044] (Effects and significance of this embodiment 1) As described above, the bioprediction method based on planetary orbits according to this embodiment 1 adds angles that are odd multiples of 22.5 degrees (dividing 360 degrees into 16 equal parts) to the aspects of conventional Western astrology, making it possible to provide a detailed and highly accurate bioprediction method that is similar to the physical rhythms of biorhythms. Furthermore, it is revealed that the predicted period, items, and results almost coincide not only with the physical rhythm P of biorhythms but also with the emotional rhythm S and intellectual rhythm I, and based on this similarity, it is possible to provide a highly reliable bioprediction method that is considered scientifically significant with a probability of over 99.7%. [Examples]
[0045] (A second method of predicting biological activity based on planetary orbits) In Example 2, the calculations are simplified by considering the planet's orbit from a temporal perspective rather than a spatial one. Specifically, taking advantage of the fact that the orbits of the main planets in the solar system are close to circular, and therefore the angular velocity of the planet's orbit is nearly constant, the calculations are reduced. In Example 1, predictions were made based on the angle the planet made on the ecliptic at the time of birth and the predicted time, but in Example 2, predictions are made based on the most recent elapsed time at the predicted time. Therefore, redundant explanations of content similar to Example 1 will be omitted as much as possible, and the explanation will focus on the differences from Example 1.
[0046] A second preferred embodiment of the biological prediction method according to the present invention will be described with reference to Figure 4. The biological prediction method of Example 2 is a biological prediction method based on the orbit of a planet, and consists of a first elapsed time acquisition step 41 which acquires the first elapsed time from the time of birth to the time of prediction, a second elapsed time acquisition step 42 which acquires the second elapsed time immediately preceding the prediction time from the first elapsed time and the orbital period of the planets in the solar system, and an evaluation step 43 which predicts the condition or fortune of the biological being by evaluating the second elapsed time of the previous period. Here, in the evaluation step 43 of the previous period, as in the first problem-solving means of the previous period, if the second elapsed time of the previous period is within the range of a time of an odd multiple of 1 / 16th of a period plus or minus 1 / 360th of a period, it is also predicted to be discordant.
[0047] Therefore, the first elapsed time is obtained in the first elapsed time acquisition process 41 from the time of birth to the time of prediction, the second elapsed time immediately preceding the prediction time is obtained in the second elapsed time acquisition process 42 from the first elapsed time in the previous period and the orbital period of the planets in the solar system, and the condition or fortune of the living organism is predicted by evaluating the second elapsed time in the previous period in the evaluation process 43. Here, the meaningful time used in the evaluation process 43 is obtained by adding odd multiples of 1 / 16th of the period of the planet's orbit, so as to correspond to the aspect used in the evaluation process of the first problem-solving means. As a result, detailed predictions can be made with simple calculations.
[0048] I will now explain each step in detail. (First elapsed time acquisition process 41) In the first elapsed time acquisition process 41, the first elapsed time from the time of birth to the predicted time is acquired. The first elapsed time is acquired by converting the time of birth and the predicted time to modified Julian days, which represent the number of days elapsed from a certain point in time, and then subtracting the modified Julian day of the time of birth from the modified Julian day of the predicted time. However, any method can be used to acquire the first elapsed time from the time of birth to the predicted time, such as adding the number of days in years or months from birth to the predicted time. Also, although days were used as the unit, it goes without saying that any unit such as years or seconds can be used.
[0049] (Second elapsed time acquisition process 42) In the second elapsed time acquisition process 42, the most recent second elapsed time at the predicted time point is obtained from the first elapsed time in the previous period and the orbital periods of the planets in the solar system. Here, the planets of the solar system include not only Earth but also other planets in the solar system such as Mercury, Venus, Mars, Jupiter, and Saturn. For this reason, the first elapsed time in the previous period is divided by the orbital period for each planet, and the remainder or decimal value is taken as the second elapsed time for each planet. The units of the first elapsed time and the orbital period used in the division are the same, and the unit of the second elapsed time when the remainder is used is the same as the first elapsed time and the orbital period, and the unit when the decimal value is used is the period, but it goes without saying that this is not always the case.
[0050] Furthermore, similar to how, in the angle acquisition step 22 of Example 1, if the result of the subtraction exceeds 180 degrees, it is subtracted from 360 degrees to make it 180 degrees or less, if the second elapsed time is longer than half of the orbital period, the value obtained by subtracting the second elapsed time from the orbital period is taken as the second elapsed time. This process is not strictly necessary, but it helps to reduce the processing in the evaluation step 43.
[0051] (Evaluation process 43) In evaluation step 43, it is determined whether the second elapsed time for each planet corresponds to a meaningful time. If so, the prediction items are determined from the planets corresponding to the orbital periods used in the division when obtaining the second elapsed time in second elapsed time acquisition step 42, and the quality of the prediction result, including its degree, is determined from the corresponding meaningful time. Then, the condition and fortune of the organism are predicted based on the determined prediction items and the quality of the prediction result, including its degree.
[0052] (Meaningful time to be used in evaluation process 43) The meaningful time used in evaluation process 43 is the aspect of Example 1 replaced with time. Therefore, for each meaningful time, information is defined regarding whether the influence is harmonious or disharmonious, the strength of the influence, and the acceptable range. Specifically, as described below the process name of evaluation process 43 in Figure 4, 1 / 3 and 1 / 6 periods are defined as times that show strong harmony, 1 / 12 periods as times that show moderate harmony, 1 / 10, 1 / 5, and 2 / 5 periods as times that show weak harmony, 1 / 4 and 1 / 2 periods as times that show strong disharmoniousness, and 1 / 8, 3 / 8, and 5 / 12 periods as times that show moderate disharmoniousness. In the present invention, a natural extension is added to these, and 1 / 16, 3 / 16, 5 / 16, and 7 / 16 periods are added as times that show weak disharmoniousness, which are natural number multiples of 1 / 16 period.
[0053] These times also represent the approximate time it takes for a planet to travel through angles such as 120 and 60 degrees as angles showing strong harmony, 30 degrees as an angle showing moderate harmony, 36, 72 and 144 degrees as angles showing weak harmony, 90 and 180 degrees as angles showing strong disharmony, 45, 135 and 150 degrees as angles showing moderate disharmony, and 22.5, 67.5, 112.5 and 157.5 degrees as angles showing weak disharmony.
[0054] It is not necessary to use all of these time periods for meaningful time; you may select and use them as appropriate for evaluation. Furthermore, while the unit of meaningful time is defined as a period, it goes without saying that you may also convert and retain values in other units, such as days.
[0055] Regarding the acceptable range of meaningful time, to be almost the same as in Example 1, the angles between strong harmony and strong dissonance were set to ±6 periods of ±360, the angles between moderate harmony and moderate dissonance were set to ±2 periods of ±360, and the angles between weak harmony and weak dissonance were set to ±1 period of ±360.
[0056] While meaningful time is stored in a table format, any format is acceptable as long as it contains the necessary time information to evaluate the meaning of the second elapsed time in evaluation step 43, such as a function format. Furthermore, even if within an acceptable range, the degree of influence may be varied depending on the difference from meaningful time.
[0057] (Example of prediction in Example 2) As an example of prediction in Example 2, similar to the prediction example in Example 1, we predict the condition of a person born at noon on January 1, 1990, Japan time, at noon on July 25, 2025, based on the Earth's revolution. In the first elapsed time acquisition process 41, since the time is noon in both cases, we subtract the corrected Julian day of January 1, 1990 (47,892 days) from the corrected Julian day of July 25, 2025 (60,881 days) to obtain the first elapsed time of 12,989 days. In the second elapsed time acquisition process 42, we divide the first elapsed time of 12,989 days by the Earth's revolution period of 365.2560 days to obtain a period of 35.56136. Since the decimal part, 0.56136 periods, is longer than half of the revolution period, we subtract it from the first period to obtain the second elapsed time of 0.43864 periods. In evaluation step 43, the second elapsed time falls within a weak discordant range of 0.4375 cycles (16 / 7 cycles) plus or minus 0.0027 cycles (1 / 360 cycles), and because the Earth's predicted items are vitality and health, the prediction is that "vitality and health will be slightly lower than normal." The result in this case is consistent with the prediction example in Example 1.
[0058] However, the prediction method in Example 2 has an error in prediction timing due to the estimation of the planet's position from elapsed time, even though the planet's orbit is strictly elliptical. Figure 5 shows the number of days of error in prediction timing for each planet as it orbits one full revolution, starting with an error of 0 days on January 1, 2021, at intervals of 1 / 6 of an orbit. The maximum range of error for each planet is approximately 11 days for Mercury, approximately 1 day for Venus, and approximately 4 days for Earth. Thus, the error in prediction timing for Mercury is longer than 5.5 days, which is 1 / 16th of Mercury's orbital period, and is not at a level that can be ignored. Nevertheless, just as Dr. Friedrich Telcher was able to discover Intelligent Rhythm I, it may be possible to verify its significance if there is a sufficient amount of data for a 3 / 16th period corresponding to Intelligent Rhythm I of biorhythms. Furthermore, the error in prediction timing for Venus is sufficiently short, and it is at a practical level even if this error is taken into account when evaluating the meaningful time tolerance range. The timing errors in predictions about the Earth are at a practical level, and improvements such as monthly corrections can be easily conceivable.
[0059] Furthermore, while the above example shows the case of dividing by the planet's orbital period in the second elapsed time acquisition process, the value to divide is not necessarily limited to the orbital period. For example, if you only want to know about vitality or health problems, you can divide by 1 / 16th of the Earth's orbital period and only retain information corresponding to that period as meaningful time. Also, although it is not very meaningful, it is possible to make similar predictions by dividing by twice the orbital period and retaining meaningful time for two periods. Thus, instead of the orbital period as the value to divide, you can also use time based on the orbital period, such as time obtained by dividing the orbital period by a natural number or time that is a natural number multiple of the orbital period.
[0060] (Summary of Example 2) As described above, in the bioprediction method of this embodiment 2, instead of calculating the Earth's orbital position, it is possible to make highly accurate predictions of vitality and health, similar to the 23-day cycle of the body rhythm P of biorhythms, with relatively simple calculations by estimating from the elapsed time from the time of birth to the time of prediction and the Earth's orbital period. Furthermore, intelligence can be predicted using the orbital period of Mercury, and emotional richness can be predicted using the orbital period of Venus, similarly with relatively simple calculations.
[0061] (Embodiment) The bioprediction method according to the present invention, as shown in Examples 1 and 2, can be implemented not only with dedicated bioprediction equipment, but also with PCs, tablets, mobile devices, wearable devices, game consoles, toys, home appliances, communication services, etc. Furthermore, each step of the present invention may be implemented by a program that runs on the same hardware, by different circuits for each step, or by sharing the functions among multiple devices.
[0062] (Application) The bio-prediction method according to the present invention can be used in a wide range of applications, such as health management, efficiency improvement, sports, interpersonal relationships, education, accident prevention, and fortune telling, similar to conventional biorhythms and Western astrology.
[0063] (Future challenges) As a future challenge, while this invention has demonstrated that predictions based on the orbits of Mercury, Venus, and Earth around the Sun are meaningful, it is conceivable that similarly significant predictions can be made for Mars, Jupiter, and Saturn. Furthermore, this invention uses a stellar reference as the basis for orbits, but this results in a difference of about one day over 70 years compared to using the vernal equinox, which is determined by the tilt of the Earth's axis, as the reference. Neither method poses a major problem, but determining which is more accurate will be a subject for future research. [Industrial applicability]
[0064] This invention reveals that biorhythms, which have become widely popular worldwide since the 1970s, are actually based on planetary orbits, and that there were subtle errors in the period, which had been limited to natural numbers. It also reveals that there is a very high possibility that this has significance not only for biorhythms, which have been positioned as pseudoscience, but also for heliocentric Western astrology, which has been positioned as mystical. This disclosure may lead to a global re-evaluation of these prediction methods and a resurgence in popularity, so the biological prediction method according to the present invention, which improves upon these prediction methods, has a strong potential for widespread adoption. [Explanation of Symbols]
[0065] 11.21 Planetary position acquisition process 12,22 Angle acquisition process 13, 23, 43 Evaluation process 41. First elapsed time acquisition process 42 Second elapsed time acquisition process
Claims
1. An information processing device for performing biological predictions based on the orbit of a planet, comprising: a first elapsed time acquisition unit that acquires a first elapsed time from the time of birth of the organism to the time of prediction for the organism; a second elapsed time acquisition unit that acquires the second elapsed time immediately preceding the prediction time from the first elapsed time acquired by the first elapsed time acquisition unit and the orbital period of a planet in the solar system; and an evaluation unit that predicts the condition or fortune of the organism by evaluating the second elapsed time acquired by the second elapsed time acquisition unit, wherein the evaluation unit predicts discordant conditions if the time is within the range of a natural number multiple of 1 / 16 of the orbital period plus or minus 1 / 360 of a period.
2. An information processing device for performing biological predictions based on the orbit of a planet, comprising: a first elapsed time acquisition unit that acquires a first elapsed time from the time of birth of the organism to the time of prediction for the organism; a second elapsed time acquisition unit that acquires the second elapsed time immediately preceding the prediction time from the first elapsed time acquired by the first elapsed time acquisition unit and the orbital period of a planet in the solar system; and an evaluation unit that predicts the condition or fortune of the organism by evaluating the second elapsed time acquired by the second elapsed time acquisition unit, wherein the evaluation unit predicts the condition as harmonious if the time is within the range of one-third of the orbital period plus or minus 6 / 360 of a period.
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